| 1 | A cross-organ single-cell analysis of hypertension. (Qiu Q, Liu Y, Xue H, Pandey R, Liu J, He L, Liu P, Therani B, Kumar V, Huang J, Sadri S, Guenther M, Usa K, Grzybowski M, Vanden Avond MA, Greene AS, Cowley AW Jr, Rao S, Geurts AM, Liang M) Science 2026 Aug 13;393(6812):eaea6187 |
| 3 | Conditional ablation of RGS2 in myeloid cells does not influence blood pressure and organ damage in angiotensin II-induced hypertension in mice. (Nakagawa P, Lu KT, Reho JJ, Ghobrial M, Kaminski K, Hantke-Guixa A, Mathieu NM, Brozoski DT, Chaihongsa N, Wackman KK, Rajendiran NR, Dhoondia Z, Segar JL, Sigmund CD, Grobe JL) Physiol Rep 2026 Jul;14(14):e71023 |
| 2 | Vascular smooth muscle RbFox2 regulates the cytoskeleton and arterial stiffness by a RhoBTB1/Cullin-3 mechanism. (Kumar G, Chaihongsa N, Brozoski DT, Golosova D, Vazirabad I, Lu KT, Wackman KK, Singh RK, Sigmund CD) JCI Insight 2026 Jun 08;11(11) 1 Citation |
| 5 | Role of the Renin-Angiotensin System in Blood Pressure Regulation in Smooth Muscle-Specific Cullin-3 Deficient Mice. (Golosova D, Kumar G, Chaihongsa N, Reho JJ, Lu KT, Brozoski DT, Wackman KK, Lawton SBR, Muskus PC, Lin BL, Grobe JL, Nakagawa P, Sigmund CD) Hypertension 2025 Jul;82(7):1208-1220 3 Citations |
| 1 | Role of local angiotensin II signaling in bladder function. (Anderson HA, Robilotto GL, Mickle AD) Am J Physiol Renal Physiol 2024 Nov 01;327(5):F726-F738 |
| 4 | Genetic Deletion of β-Arrestin 2 From the Subfornical Organ and Other Periventricular Nuclei in the Brain Alters Fluid Homeostasis and Blood Pressure. (Mathieu NM, Tan EE, Reho JJ, Brozoski DT, Muskus PC, Lu KT, Wackman KK, Grobe JL, Nakagawa P, Sigmund CD) Hypertension 2024 Jun;81(6):1332-1344 4 Citations |
| 5 | Angiotensin AT1A receptor signal switching in Agouti-related peptide neurons mediates metabolic rate adaptation during obesity. (Balapattabi K, Yavuz Y, Jiang J, Deng G, Mathieu NM, Ritter ML, Opichka MA, Reho JJ, McCorvy JD, Nakagawa P, Morselli LL, Mouradian GC Jr, Atasoy D, Cui H, Hodges MR, Sigmund CD, Grobe JL) Cell Rep 2023 Aug 29;42(8):112935 11 Citations |
| 3 | Insights Into the Role of Angiotensin-II AT1 Receptor-Dependent β-Arrestin Signaling in Cardiovascular Disease. (Mathieu NM, Nakagawa P, Grobe JL, Sigmund CD) Hypertension 2024 Jan;81(1):6-16 24 Citations |
| 1 | Nedd4-2 up-regulation is associated with ACE2 ubiquitination in hypertension. (Mohammed M, Ogunlade B, Elgazzaz M, Berdasco C, Lakkappa N, Ghita I, Guidry JJ, Sriramula S, Xu J, Restivo L, Mendiola Plá MA, Bowles DE, Beyer AM, Yue X, Lazartigues E, Filipeanu CM) Cardiovasc Res 2023 Sep 05;119(11):2130-2141 31 Citations |
| 1 | Broad-acting therapeutic effects of miR-29b-chitosan on hypertension and diabetic complications. (Jensen DM, Han P, Mangala LS, Lopez-Berestein G, Sood AK, Liu J, Kriegel AJ, Usa K, Widlansky ME, Liang M) Mol Ther 2022 Nov 02;30(11):3462-3476 19 Citations |
| 1 | Blockade of endothelial Mas receptor restores the vasomotor response to phenylephrine in human resistance arterioles pretreated with captopril and exposed to propofol. (Schulz ME, Hockenberry JC, Katunaric B, Pagel PS, Freed JK) BMC Anesthesiol 2022 Jul 29;22(1):240 1 Citation |
| 5 | Chronic intracerebroventricular infusion of angiotensin II causes dose- and sex-dependent effects on intake behaviors and energy homeostasis in C57BL/6J mice. (Oliveira V, Reho JJ, Balapattabi K, Ritter ML, Mathieu NM, Opichka MA, Lu KT, Grobe CC, Silva SD Jr, Wackman KK, Nakagawa P, Segar JL, Sigmund CD, Grobe JL) Am J Physiol Regul Integr Comp Physiol 2022 Oct 01;323(4):R410-R421 7 Citations |
| 5 | Melanocortin MC4R receptor is required for energy expenditure but not blood pressure effects of angiotensin II within the mouse brain. (Oliveira V, Riedl RA, Claflin KE, Mathieu NM, Ritter ML, Balapattabi K, Wackman KK, Reho JJ, Brozoski DT, Morgan DA, Cui H, Rahmouni K, Burnett CML, Nakagawa P, Sigmund CD, Morselli LL, Grobe JL) Physiol Genomics 2022 Jun 01;54(6):196-205 7 Citations |
| 5 | RhoBTB1 reverses established arterial stiffness in angiotensin II-induced hypertension by promoting actin depolymerization. (Fang S, Wu J, Reho JJ, Lu KT, Brozoski DT, Kumar G, Werthman AM, Silva SD Jr, Muskus Veitia PC, Wackman KK, Mathison AJ, Teng BQ, Lin CW, Quelle FW, Sigmund CD) JCI Insight 2022 May 09;7(9) 24 Citations |
| 1 | Divergent roles of angiotensin II upon the immediate and sustained increases of renal blood flow following unilateral nephrectomy. (Shimada S, Yang C, Kurth T, Cowley AW Jr) Am J Physiol Renal Physiol 2022 May 01;322(5):F473-F485 10 Citations |
| 3 | Macrophage 12(S)-HETE Enhances Angiotensin II-Induced Contraction by a BLT2 (Leukotriene B4 Type-2 Receptor) and TP (Thromboxane Receptor)-Mediated Mechanism in Murine Arteries. (Kriska T, Herrnreiter A, Pfister SL, Adebesin A, Falck JR, Campbell WB) Hypertension 2022 Jan;79(1):104-114 19 Citations |
| 1 | The Histamine 3 Receptor Is Expressed in the Heart and Its Activation Opposes Adverse Cardiac Remodeling in the Angiotensin II Mouse Model. (McCaffrey SL, Lim G, Bullock M, Kasparian AO, Clifton-Bligh R, Campbell WB, Widiapradja A, Levick SP) Int J Mol Sci 2020 Dec 21;21(24) 11 Citations |
| 1 | 1-trifluoromethoxyphenyl-3-(1-propionylpiperidin-4-yl) urea (TPPU), a soluble epoxide hydrolase inhibitor, lowers L-NAME-induced hypertension through suppression of angiotensin-converting enzyme in rats. (Bukhari IA, Alorainey BI, Al-Motrefi AA, Mahmoud A, Campbell WB, Hammock BD) Eur Rev Med Pharmacol Sci 2020 Aug;24(15):8143-8150 5 Citations |
| 1 | Renal Perfusion Pressure Determines Infiltration of Leukocytes in the Kidney of Rats With Angiotensin II-Induced Hypertension. (Shimada S, Abais-Battad JM, Alsheikh AJ, Yang C, Stumpf M, Kurth T, Mattson DL, Cowley AW Jr) Hypertension 2020 Sep;76(3):849-858 17 Citations |
| 3 | Increased Susceptibility of Mice Lacking Renin-b to Angiotensin II-Induced Organ Damage. (Nakagawa P, Nair AR, Agbor LN, Gomez J, Wu J, Zhang SY, Lu KT, Morgan DA, Rahmouni K, Grobe JL, Sigmund CD) Hypertension 2020 Aug;76(2):468-477 11 Citations |
| 5 | Cardiomyocyte-Specific Snrk Prevents Inflammation in the Heart. (Thirugnanam K, Cossette SM, Lu Q, Chowdhury SR, Harmann LM, Gupta A, Spearman AD, Sonin DL, Bordas M, Kumar SN, Pan AY, Simpson PM, Strande JL, Bishop E, Zou MH, Ramchandran R) J Am Heart Assoc 2019 Nov 19;8(22):e012792 14 Citations |
| 3 | Endothelial PPARγ (Peroxisome Proliferator-Activated Receptor-γ) Protects From Angiotensin II-Induced Endothelial Dysfunction in Adult Offspring Born From Pregnancies Complicated by Hypertension. (Nair AR, Silva SD Jr, Agbor LN, Wu J, Nakagawa P, Mukohda M, Lu KT, Sandgren JA, Pierce GL, Santillan MK, Grobe JL, Sigmund CD) Hypertension 2019 Jul;74(1):173-183 28 Citations |
| 1 | RhoBTB1 protects against hypertension and arterial stiffness by restraining phosphodiesterase 5 activity. (Mukohda M, Fang S, Wu J, Agbor LN, Nair AR, Ibeawuchi SC, Hu C, Liu X, Lu KT, Guo DF, Davis DR, Keen HL, Quelle FW, Sigmund CD) J Clin Invest 2019 Mar 21;129(6):2318-2332 41 Citations |
| 2 | MiR-192-5p in the Kidney Protects Against the Development of Hypertension. (Baker MA, Wang F, Liu Y, Kriegel AJ, Geurts AM, Usa K, Xue H, Wang D, Kong Y, Liang M) Hypertension 2019 Feb;73(2):399-406 57 Citations |
| 1 | High salt diet impairs cerebral blood flow regulation via salt-induced angiotensin II suppression. (Allen LA, Schmidt JR, Thompson CT, Carlson BE, Beard DA, Lombard JH) Microcirculation 2019 Apr;26(3):e12518 19 Citations |
| 1 | Interference With Endothelial PPAR (Peroxisome Proliferator-Activated Receptor)-γ Causes Accelerated Cerebral Vascular Dysfunction in Response to Endogenous Renin-Angiotensin System Activation. (Nair AR, Agbor LN, Mukohda M, Liu X, Hu C, Wu J, Sigmund CD) Hypertension 2018 Nov;72(5):1227-1235 22 Citations |
| 2 | Angiotensin II Triggers Peripheral Macrophage-to-Sensory Neuron Redox Crosstalk to Elicit Pain. (Shepherd AJ, Copits BA, Mickle AD, Karlsson P, Kadunganattil S, Haroutounian S, Tadinada SM, de Kloet AD, Valtcheva MV, McIlvried LA, Sheahan TD, Jain S, Ray PR, Usachev YM, Dussor G, Krause EG, Price TJ, Gereau RW 4th, Mohapatra DP) J Neurosci 2018 Aug 08;38(32):7032-7057 107 Citations |
| 1 | Angiotensin II Signal Transduction: An Update on Mechanisms of Physiology and Pathophysiology. (Forrester SJ, Booz GW, Sigmund CD, Coffman TM, Kawai T, Rizzo V, Scalia R, Eguchi S) Physiol Rev 2018 Jul 01;98(3):1627-1738 990 Citations |
| 2 | A NOX4/TRPC6 Pathway in Podocyte Calcium Regulation and Renal Damage in Diabetic Kidney Disease. (Ilatovskaya DV, Blass G, Palygin O, Levchenko V, Pavlov TS, Grzybowski MN, Winsor K, Shuyskiy LS, Geurts AM, Cowley AW Jr, Birnbaumer L, Staruschenko A) J Am Soc Nephrol 2018 Jul;29(7):1917-1927 129 Citations |
| 2 | Angiotensin AT1A receptors expressed in vasopressin-producing cells of the supraoptic nucleus contribute to osmotic control of vasopressin. (Sandgren JA, Linggonegoro DW, Zhang SY, Sapouckey SA, Claflin KE, Pearson NA, Leidinger MR, Pierce GL, Santillan MK, Gibson-Corley KN, Sigmund CD, Grobe JL) Am J Physiol Regul Integr Comp Physiol 2018 Jun 01;314(6):R770-R780 40 Citations |
| 1 | Overexpression of the neuronal human (pro)renin receptor mediates angiotensin II-independent blood pressure regulation in the central nervous system. (Peng H, Jensen DD, Li W, Sullivan MN, Buller SA, Worker CJ, Cooper SG, Zheng S, Earley S, Sigmund CD, Feng Y) Am J Physiol Heart Circ Physiol 2018 Mar 01;314(3):H580-H592 18 Citations |
| 2 | Telomerase reverse transcriptase protects against angiotensin II-induced microvascular endothelial dysfunction. (Ait-Aissa K, Kadlec AO, Hockenberry J, Gutterman DD, Beyer AM) Am J Physiol Heart Circ Physiol 2018 May 01;314(5):H1053-H1060 34 Citations |
| 2 | Effect of Angiotensin II and ACTH on Adrenal Blood Flow in the Male Rat Adrenal Gland In Vivo. (Shah AJ, Kriska T, Gauthier KM, Falck JR, Campbell WB) Endocrinology 2018 Jan 01;159(1):217-226 8 Citations |
| 1 | Nitric oxide production by glomerular podocytes. (Palygin O, Ilatovskaya DV, Levchenko V, Endres BT, Geurts AM, Staruschenko A) Nitric Oxide 2018 Jan 30;72:24-31 20 Citations |
| 1 | Obligatory Metabolism of Angiotensin II to Angiotensin III for Zona Glomerulosa Cell-Mediated Relaxations of Bovine Adrenal Cortical Arteries. (Kopf PG, Park SK, Herrnreiter A, Krause C, Roques BP, Campbell WB) Endocrinology 2018 Jan 01;159(1):238-247 4 Citations |
| 1 | Genetic Interference With Endothelial PPAR-γ (Peroxisome Proliferator-Activated Receptor-γ) Augments Effects of Angiotensin II While Impairing Responses to Angiotensin 1-7. (De Silva TM, Hu C, Kinzenbaw DA, Modrick ML, Sigmund CD, Faraci FM) Hypertension 2017 Sep;70(3):559-565 18 Citations |
| 2 | How Is the Brain Renin-Angiotensin System Regulated? (Nakagawa P, Sigmund CD) Hypertension 2017 Jul;70(1):10-18 72 Citations |
| 2 | Evidence for intraventricular secretion of angiotensinogen and angiotensin by the subfornical organ using transgenic mice. (Agassandian K, Grobe JL, Liu X, Agassandian M, Thompson AP, Sigmund CD, Cassell MD) Am J Physiol Regul Integr Comp Physiol 2017 Jun 01;312(6):R973-R981 14 Citations |
| 2 | Angiotensin AT1A receptors on leptin receptor-expressing cells control resting metabolism. (Claflin KE, Sandgren JA, Lambertz AM, Weidemann BJ, Littlejohn NK, Burnett CM, Pearson NA, Morgan DA, Gibson-Corley KN, Rahmouni K, Grobe JL) J Clin Invest 2017 Apr 03;127(4):1414-1424 68 Citations |
| 1 | Mechanisms of Mas1 Receptor-Mediated Signaling in the Vascular Endothelium. (Hoffmann BR, Stodola TJ, Wagner JR, Didier DN, Exner EC, Lombard JH, Greene AS) Arterioscler Thromb Vasc Biol 2017 Mar;37(3):433-445 37 Citations |
| 1 | Polyphenol rich ethanolic extract from Boerhavia diffusa L. mitigates angiotensin II induced cardiac hypertrophy and fibrosis in rats. (A P, Varghese MV, S A, P SR, Mathew AK, Nair A, Nair RH, K G R) Biomed Pharmacother 2017 Mar;87:427-436 37 Citations |
| 1 | Cardiac-deleterious role of galectin-3 in chronic angiotensin II-induced hypertension. (González GE, Rhaleb NE, D'Ambrosio MA, Nakagawa P, Liao TD, Peterson EL, Leung P, Dai X, Janic B, Liu YH, Yang XP, Carretero OA) Am J Physiol Heart Circ Physiol 2016 Nov 01;311(5):H1287-H1296 71 Citations |
| 1 | Role of CaMKII in Ang-II-dependent small artery remodeling. (Prasad AM, Ketsawatsomkron P, Nuno DW, Koval OM, Dibbern ME, Venema AN, Sigmund CD, Lamping KG, Grumbach IM) Vascul Pharmacol 2016 Dec;87:172-179 8 Citations |
| 2 | Suppression of Resting Metabolism by the Angiotensin AT2 Receptor. (Littlejohn NK, Keen HL, Weidemann BJ, Claflin KE, Tobin KV, Markan KR, Park S, Naber MC, Gourronc FA, Pearson NA, Liu X, Morgan DA, Klingelhutz AJ, Potthoff MJ, Rahmouni K, Sigmund CD, Grobe JL) Cell Rep 2016 Aug 09;16(6):1548-1560 40 Citations |
| 2 | mTORC1 Signaling Contributes to Drinking But Not Blood Pressure Responses to Brain Angiotensin II. (Muta K, Morgan DA, Grobe JL, Sigmund CD, Rahmouni K) Endocrinology 2016 Aug;157(8):3140-8 11 Citations |
| 1 | Hypertension: A Disease That Strikes Around the Clock. (Wu J, Sigmund CD) Hypertension 2016 Mar;67(3):493-5 4 Citations |
| 1 | Salt, Angiotensin II, Superoxide, and Endothelial Function. (Boegehold MA, Drenjancevic I, Lombard JH) Compr Physiol 2015 Dec 15;6(1):215-54 44 Citations |
| 2 | The NRF2 knockout rat: a new animal model to study endothelial dysfunction, oxidant stress, and microvascular rarefaction. (Priestley JR, Kautenburg KE, Casati MC, Endres BT, Geurts AM, Lombard JH) Am J Physiol Heart Circ Physiol 2016 Feb 15;310(4):H478-87 66 Citations |
| 1 | Interference with PPARγ in endothelium accelerates angiotensin II-induced endothelial dysfunction. (Hu C, Lu KT, Mukohda M, Davis DR, Faraci FM, Sigmund CD) Physiol Genomics 2016 Feb;48(2):124-34 34 Citations |
| 1 | AT2R autoantibodies block angiotensin II and AT1R autoantibody-induced vasoconstriction. (Liles C, Li H, Veitla V, Liles JT, Murphy TA, Cunningham MW, Yu X, Kem DC) Hypertension 2015 Oct;66(4):830-5 23 Citations |
| 1 | Calcium/calmodulin-dependent kinase II inhibition in smooth muscle reduces angiotensin II-induced hypertension by controlling aortic remodeling and baroreceptor function. (Prasad AM, Morgan DA, Nuno DW, Ketsawatsomkron P, Bair TB, Venema AN, Dibbern ME, Kutschke WJ, Weiss RM, Lamping KG, Chapleau MW, Sigmund CD, Rahmouni K, Grumbach IM) J Am Heart Assoc 2015 Jun 15;4(6):e001949 41 Citations |
| 1 | Associations of ApoAI and ApoB-containing lipoproteins with AngII-induced abdominal aortic aneurysms in mice. (Liu J, Lu H, Howatt DA, Balakrishnan A, Moorleghen JJ, Sorci-Thomas M, Cassis LA, Daugherty A) Arterioscler Thromb Vasc Biol 2015 Aug;35(8):1826-34 43 Citations |
| 1 | Smooth Muscle Peroxisome Proliferator-Activated Receptor γ Plays a Critical Role in Formation and Rupture of Cerebral Aneurysms in Mice In Vivo. (Hasan DM, Starke RM, Gu H, Wilson K, Chu Y, Chalouhi N, Heistad DD, Faraci FM, Sigmund CD) Hypertension 2015 Jul;66(1):211-20 34 Citations |
| 1 | ANG II modulation of cardiac growth and remodeling in immature fetal sheep. (Sandgren J, Scholz TD, Segar JL) Am J Physiol Regul Integr Comp Physiol 2015 Jun 01;308(11):R965-72 8 Citations |
| 1 | Molecular mechanisms regulating vascular tone by peroxisome proliferator activated receptor gamma. (Ketsawatsomkron P, Sigmund CD) Curr Opin Nephrol Hypertens 2015 Mar;24(2):123-30 26 Citations |
| 2 | Mechanisms of brain renin angiotensin system-induced drinking and blood pressure: importance of the subfornical organ. (Coble JP, Grobe JL, Johnson AK, Sigmund CD) Am J Physiol Regul Integr Comp Physiol 2015 Feb 15;308(4):R238-49 91 Citations |
| 1 | Renin knockout rat: control of adrenal aldosterone and corticosterone synthesis in vitro and adrenal gene expression. (Raff H, Gehrand A, Bruder ED, Hoffman MJ, Engeland WC, Moreno C) Am J Physiol Regul Integr Comp Physiol 2015 Jan 01;308(1):R73-7 7 Citations |
| 1 | Deletion of interleukin-6 prevents cardiac inflammation, fibrosis and dysfunction without affecting blood pressure in angiotensin II-high salt-induced hypertension. (González GE, Rhaleb NE, D'Ambrosio MA, Nakagawa P, Liu Y, Leung P, Dai X, Yang XP, Peterson EL, Carretero OA) J Hypertens 2015 Jan;33(1):144-52 101 Citations |
| 1 | Direct pro-inflammatory effects of prorenin on microglia. (Shi P, Grobe JL, Desland FA, Zhou G, Shen XZ, Shan Z, Liu M, Raizada MK, Sumners C) PLoS One 2014;9(10):e92937 73 Citations |
| 1 | Actin dynamics is rapidly regulated by the PTEN and PIP2 signaling pathways leading to myocyte hypertrophy. (Li J, Tanhehco EJ, Russell B) Am J Physiol Heart Circ Physiol 2014 Dec 01;307(11):H1618-25 30 Citations |
| 2 | Role of vascular smooth muscle PPARγ in regulating AT1 receptor signaling and angiotensin II-dependent hypertension. (Carrillo-Sepulveda MA, Keen HL, Davis DR, Grobe JL, Sigmund CD) PLoS One 2014;9(8):e103786 12 Citations |
| 1 | Collecting duct-specific knockout of renin attenuates angiotensin II-induced hypertension. (Ramkumar N, Stuart D, Rees S, Hoek AV, Sigmund CD, Kohan DE) Am J Physiol Renal Physiol 2014 Oct 15;307(8):F931-8 56 Citations |
| 2 | Response to "Does angiotensin-dependent superoxide production help to prevent salt-induced endothelial dysfunction in 2 kidney-1 clip hypertensive rats?". (Beyer AM, Fredrich K, Lombard JH) Am J Hypertens 2014 Apr;27(4):640 |
| 1 | Angiotensin II-induced cardiovascular load regulates cardiac remodeling and related gene expression in late-gestation fetal sheep. (Norris AW, Bahr TM, Scholz TD, Peterson ES, Volk KA, Segar JL) Pediatr Res 2014 Jun;75(6):689-696 9 Citations |
| 1 | Neuron-specific (pro)renin receptor knockout prevents the development of salt-sensitive hypertension. (Li W, Peng H, Mehaffey EP, Kimball CD, Grobe JL, van Gool JM, Sullivan MN, Earley S, Danser AH, Ichihara A, Feng Y) Hypertension 2014 Feb;63(2):316-23 95 Citations |
| 2 | Aldosterone secretagogues increase adrenal blood flow in male rats. (Ansurudeen I, Kopf PG, Gauthier KM, Bornstein SR, Cowley AW Jr, Campbell WB) Endocrinology 2014 Jan;155(1):127-32 11 Citations |
| 1 | Endothelial metabolism of angiotensin II to angiotensin III, not angiotensin (1-7), augments the vasorelaxation response in adrenal cortical arteries. (Kopf PG, Campbell WB) Endocrinology 2013 Dec;154(12):4768-76 11 Citations |
| 1 | AT1 receptors prevent salt-induced vascular dysfunction in isolated middle cerebral arteries of 2 kidney-1 clip hypertensive rats. (Beyer AM, Fredrich K, Lombard JH) Am J Hypertens 2013 Dec;26(12):1398-404 10 Citations |
| 1 | N-acetyl-seryl-aspartyl-lysyl-proline reduces cardiac collagen cross-linking and inflammation in angiotensin II-induced hypertensive rats. (González GE, Rhaleb NE, Nakagawa P, Liao TD, Liu Y, Leung P, Dai X, Yang XP, Carretero OA) Clin Sci (Lond) 2014 Jan 01;126(1):85-94 48 Citations |
| 1 | Differential control of calcium homeostasis and vascular reactivity by Ca2+/calmodulin-dependent kinase II. (Prasad AM, Nuno DW, Koval OM, Ketsawatsomkron P, Li W, Li H, Shen FY, Joiner ML, Kutschke W, Weiss RM, Sigmund CD, Anderson ME, Lamping KG, Grumbach IM) Hypertension 2013 Aug;62(2):434-41 33 Citations |
| 1 | Statins exert the pleiotropic effects through small GTP-binding protein dissociation stimulator upregulation with a resultant Rac1 degradation. (Tanaka S, Fukumoto Y, Nochioka K, Minami T, Kudo S, Shiba N, Takai Y, Williams CL, Liao JK, Shimokawa H) Arterioscler Thromb Vasc Biol 2013 Jul;33(7):1591-600 80 Citations |
| 1 | Reduced angiotensin II levels cause generalized vascular dysfunction via oxidant stress in hamster cheek pouch arterioles. (Priestley JR, Buelow MW, McEwen ST, Weinberg BD, Delaney M, Balus SF, Hoeppner C, Dondlinger L, Lombard JH) Microvasc Res 2013 Sep;89:134-45 22 Citations |
| 1 | Real-time electrochemical detection of ATP and H₂O₂ release in freshly isolated kidneys. (Palygin O, Levchenko V, Ilatovskaya DV, Pavlov TS, Ryan RP, Cowley AW Jr, Staruschenko A) Am J Physiol Renal Physiol 2013 Jul 01;305(1):F134-41 35 Citations |
| 2 | Low-dose angiotensin II infusion restores vascular function in cerebral arteries of high salt-fed rats by increasing copper/zinc superoxide dimutase expression. (Durand MJ, Lombard JH) Am J Hypertens 2013 Jun;26(6):739-47 41 Citations |
| 1 | Angiotensin II and III metabolism and effects on steroid production in the HAC15 human adrenocortical cell line. (Oki K, Kopf PG, Campbell WB, Luis Lam M, Yamazaki T, Gomez-Sanchez CE, Gomez-Sanchez EP) Endocrinology 2013 Jan;154(1):214-21 25 Citations |
| 2 | PPARγ regulates resistance vessel tone through a mechanism involving RGS5-mediated control of protein kinase C and BKCa channel activity. (Ketsawatsomkron P, Lorca RA, Keen HL, Weatherford ET, Liu X, Pelham CJ, Grobe JL, Faraci FM, England SK, Sigmund CD) Circ Res 2012 Nov 09;111(11):1446-58 56 Citations |
| 1 | Medullary thick ascending limb buffer vasoconstriction of renal outer-medullary vasa recta in salt-resistant but not salt-sensitive rats. (O'Connor PM, Cowley AW Jr) Hypertension 2012 Oct;60(4):965-72 19 Citations |
| 1 | Impact of maternal dexamethasone on coronary PGE(2) production and prostaglandin-dependent coronary reactivity. (Roghair RD, Volk KA, Lamb FS, Segar JL) Am J Physiol Regul Integr Comp Physiol 2012 Sep 01;303(5):R513-9 3 Citations |
| 1 | Sex-specific programming of hypertension in offspring of late-gestation diabetic rats. (Katkhuda R, Peterson ES, Roghair RD, Norris AW, Scholz TD, Segar JL) Pediatr Res 2012 Oct;72(4):352-61 36 Citations |
| 2 | Dahl salt-sensitive rats are protected against vascular defects related to diet-induced obesity. (Beyer AM, Raffai G, Weinberg B, Fredrich K, Lombard JH) Hypertension 2012 Aug;60(2):404-10 29 Citations |
| 2 | A brain leptin-renin angiotensin system interaction in the regulation of sympathetic nerve activity. (Hilzendeger AM, Morgan DA, Brooks L, Dellsperger D, Liu X, Grobe JL, Rahmouni K, Sigmund CD, Mark AL) Am J Physiol Heart Circ Physiol 2012 Jul 15;303(2):H197-206 106 Citations |
| 1 | Enzymatic processing of angiotensin peptides by human glomerular endothelial cells. (Velez JC, Ierardi JL, Bland AM, Morinelli TA, Arthur JM, Raymond JR, Janech MG) Am J Physiol Renal Physiol 2012 Jun 15;302(12):F1583-94 39 Citations |
| 1 | Cytochrome P450 1B1 contributes to renal dysfunction and damage caused by angiotensin II in mice. (Jennings BL, Anderson LJ, Estes AM, Yaghini FA, Fang XR, Porter J, Gonzalez FJ, Campbell WB, Malik KU) Hypertension 2012 Feb;59(2):348-54 44 Citations |
| 1 | Involvement of cytochrome P-450 1B1 in renal dysfunction, injury, and inflammation associated with angiotensin II-induced hypertension in rats. (Jennings BL, Anderson LJ, Estes AM, Fang XR, Song CY, Campbell WB, Malik KU) Am J Physiol Renal Physiol 2012 Feb 15;302(4):F408-20 27 Citations |
| 2 | Renal proximal tubule angiotensin AT1A receptors regulate blood pressure. (Li H, Weatherford ET, Davis DR, Keen HL, Grobe JL, Daugherty A, Cassis LA, Allen AM, Sigmund CD) Am J Physiol Regul Integr Comp Physiol 2011 Oct;301(4):R1067-77 75 Citations |
| 1 | Angiotensin II-induced dilated cardiomyopathy in Balb/c but not C57BL/6J mice. (Peng H, Yang XP, Carretero OA, Nakagawa P, D'Ambrosio M, Leung P, Xu J, Peterson EL, González GE, Harding P, Rhaleb NE) Exp Physiol 2011 Aug;96(8):756-64 67 Citations |
| 2 | Role of superoxide and thromboxane receptors in acute angiotensin II-induced vasoconstriction of rabbit vessels. (Pfister SL, Nithipatikom K, Campbell WB) Am J Physiol Heart Circ Physiol 2011 Jun;300(6):H2064-71 16 Citations |
| 1 | Renal injury in angiotensin II+L-NAME-induced hypertensive rats is independent of elevated blood pressure. (Polichnowski AJ, Lu L, Cowley AW Jr) Am J Physiol Renal Physiol 2011 Apr;300(4):F1008-16 26 Citations |
| 2 | Angiotensin II regulates adrenal vascular tone through zona glomerulosa cell-derived EETs and DHETs. (Kopf PG, Gauthier KM, Zhang DX, Falck JR, Campbell WB) Hypertension 2011 Feb;57(2):323-9 20 Citations |
| 1 | Role of integrins in angiotensin II-induced proliferation of vascular smooth muscle cells. (Bunni MA, Kramarenko II, Walker L, Raymond JR, Garnovskaya MN) Am J Physiol Cell Physiol 2011 Mar;300(3):C647-56 24 Citations |
| 2 | The brain Renin-angiotensin system controls divergent efferent mechanisms to regulate fluid and energy balance. (Grobe JL, Grobe CL, Beltz TG, Westphal SG, Morgan DA, Xu D, de Lange WJ, Li H, Sakai K, Thedens DR, Cassis LA, Rahmouni K, Mark AL, Johnson AK, Sigmund CD) Cell Metab 2010 Nov 03;12(5):431-42 141 Citations |
| 2 | Impaired relaxation of cerebral arteries in the absence of elevated salt intake in normotensive congenic rats carrying the Dahl salt-sensitive renin gene. (Durand MJ, Moreno C, Greene AS, Lombard JH) Am J Physiol Heart Circ Physiol 2010 Dec;299(6):H1865-74 21 Citations |
| 2 | Angiotensin-(1-7) and low-dose angiotensin II infusion reverse salt-induced endothelial dysfunction via different mechanisms in rat middle cerebral arteries. (Durand MJ, Raffai G, Weinberg BD, Lombard JH) Am J Physiol Heart Circ Physiol 2010 Oct;299(4):H1024-33 49 Citations |
| 1 | Angiotensin II-induced vascular smooth muscle cell migration and growth are mediated by cytochrome P450 1B1-dependent superoxide generation. (Yaghini FA, Song CY, Lavrentyev EN, Ghafoor HU, Fang XR, Estes AM, Campbell WB, Malik KU) Hypertension 2010 Jun;55(6):1461-7 83 Citations |
| 1 | Role of renal perfusion pressure versus angiotensin II on renal oxidative stress in angiotensin II-induced hypertensive rats. (Polichnowski AJ, Jin C, Yang C, Cowley AW Jr) Hypertension 2010 Jun;55(6):1425-30 30 Citations |
| 1 | Transgenic mice expressing an intracellular fluorescent fusion of angiotensin II demonstrate renal thrombotic microangiopathy and elevated blood pressure. (Redding KM, Chen BL, Singh A, Re RN, Navar LG, Seth DM, Sigmund CD, Tang WW, Cook JL) Am J Physiol Heart Circ Physiol 2010 Jun;298(6):H1807-18 41 Citations |
| 1 | Brain-selective overexpression of human Angiotensin-converting enzyme type 2 attenuates neurogenic hypertension. (Feng Y, Xia H, Cai Y, Halabi CM, Becker LK, Santos RA, Speth RC, Sigmund CD, Lazartigues E) Circ Res 2010 Feb 05;106(2):373-82 178 Citations |
| 1 | Pressure-induced renal injury in angiotensin II versus norepinephrine-induced hypertensive rats. (Polichnowski AJ, Cowley AW Jr) Hypertension 2009 Dec;54(6):1269-77 42 Citations |
| 1 | Ischemia-induced brain damage is enhanced in human renin and angiotensinogen double-transgenic mice. (Chen S, Li G, Zhang W, Wang J, Sigmund CD, Olson JE, Chen Y) Am J Physiol Regul Integr Comp Physiol 2009 Nov;297(5):R1526-31 40 Citations |
| 2 | Angiotensin II maintains cerebral vascular relaxation via EGF receptor transactivation and ERK1/2. (McEwen ST, Balus SF, Durand MJ, Lombard JH) Am J Physiol Heart Circ Physiol 2009 Oct;297(4):H1296-303 17 Citations |
| 1 | Role of oxidative stress and AT1 receptors in cerebral vascular dysfunction with aging. (Modrick ML, Didion SP, Sigmund CD, Faraci FM) Am J Physiol Heart Circ Physiol 2009 Jun;296(6):H1914-9 96 Citations |
| 1 | Time-course and mechanisms of restored vascular relaxation by reduced salt intake and angiotensin II infusion in rats fed a high-salt diet. (McEwen ST, Schmidt JR, Somberg L, Cruz Lde L, Lombard JH) Microcirculation 2009 Apr;16(3):220-34 31 Citations |
| 1 | Genetically hypertensive Brown Norway congenic rat strains suggest intermediate traits underlying genetic hypertension. (Bilusić M, Moreno C, Barreto NE, Tschannen MR, Harris EL, Porteous WK, Thompson CM, Grigor MR, Weder A, Boerwinkle E, Hunt SC, Curb JD, Jacob HJ, Kwitek AE) Croat Med J 2008 Oct;49(5):586-99 8 Citations |
| 1 | Increased blood pressure in mice lacking cytochrome P450 2J5. (Athirakul K, Bradbury JA, Graves JP, DeGraff LM, Ma J, Zhao Y, Couse JF, Quigley R, Harder DR, Zhao X, Imig JD, Pedersen TL, Newman JW, Hammock BD, Conley AJ, Korach KS, Coffman TM, Zeldin DC) FASEB J 2008 Dec;22(12):4096-108 55 Citations |
| 2 | Angiotensin II relaxations of bovine adrenal cortical arteries: role of angiotensin II metabolites and endothelial nitric oxide. (Gauthier KM, Zhang DX, Cui L, Nithipatikom K, Campbell WB) Hypertension 2008 Jul;52(1):150-5 13 Citations |
| 1 | Coronary constriction to angiotensin II is enhanced by endothelial superoxide production in sheep programmed by dexamethasone. (Roghair RD, Miller FJ Jr, Scholz TD, Lamb FS, Segar JL) Pediatr Res 2008 Apr;63(4):370-4 10 Citations |
| 1 | Role of the angiotensin II type-2 receptor in radiation nephropathy. (Cohen EP, Fish BL, Sharma M, Li XA, Moulder JE) Transl Res 2007 Aug;150(2):106-15 23 Citations |
| 1 | Kidney-specific enhancement of ANG II stimulates endogenous intrarenal angiotensinogen in gene-targeted mice. (Kobori H, Ozawa Y, Satou R, Katsurada A, Miyata K, Ohashi N, Hase N, Suzaki Y, Sigmund CD, Navar LG) Am J Physiol Renal Physiol 2007 Sep;293(3):F938-45 90 Citations |
| 1 | Effect of high-salt diet on vascular relaxation and oxidative stress in mesenteric resistance arteries. (Zhu J, Huang T, Lombard JH) J Vasc Res 2007;44(5):382-90 102 Citations |
| 1 | Enhanced superoxide production in renal outer medulla of Dahl salt-sensitive rats reduces nitric oxide tubular-vascular cross-talk. (Mori T, O'Connor PM, Abe M, Cowley AW Jr) Hypertension 2007 Jun;49(6):1336-41 76 Citations |
| 1 | Characterization of renin-angiotensin system enzyme activities in cultured mouse podocytes. (Velez JC, Bland AM, Arthur JM, Raymond JR, Janech MG) Am J Physiol Renal Physiol 2007 Jul;293(1):F398-407 86 Citations |
| 1 | Local production of angiotensin II in the subfornical organ causes elevated drinking. (Sakai K, Agassandian K, Morimoto S, Sinnayah P, Cassell MD, Davisson RL, Sigmund CD) J Clin Invest 2007 Apr;117(4):1088-95 127 Citations |
| 1 | Teaching aldosterone regulation and basic scientific principles using a classic paper by Dr. James O. Davis and colleagues. (Hanke CJ, Bauer-Dantoin AC) Adv Physiol Educ 2006 Dec;30(4):141-4 3 Citations |
| 1 | Prevention of angiotensin II-induced cardiac remodeling by angiotensin-(1-7). (Grobe JL, Mecca AP, Lingis M, Shenoy V, Bolton TA, Machado JM, Speth RC, Raizada MK, Katovich MJ) Am J Physiol Heart Circ Physiol 2007 Feb;292(2):H736-42 326 Citations |
| 1 | Potentiation of the antihypertensive action of losartan by peripheral overexpression of the ANG II type 2 receptor. (Li H, Gao Y, Grobe JL, Raizada MK, Katovich MJ, Sumners C) Am J Physiol Heart Circ Physiol 2007 Feb;292(2):H727-35 27 Citations |
| 2 | Endothelium-derived steroidogenic factor enhances angiotensin II-stimulated aldosterone release by bovine zona glomerulosa cells. (Hanke CJ, Holmes BB, Xu Y, Nithipatikom K, Campbell WB) Endocrinology 2007 Jan;148(1):317-23 6 Citations |
| 1 | Genetic ablation of angiotensinogen in the subfornical organ of the brain prevents the central angiotensinergic pressor response. (Sinnayah P, Lazartigues E, Sakai K, Sharma RV, Sigmund CD, Davisson RL) Circ Res 2006 Nov 10;99(10):1125-31 40 Citations |
| 1 | Early gestation dexamethasone alters baroreflex and vascular responses in newborn lambs before hypertension. (Segar JL, Roghair RD, Segar EM, Bailey MC, Scholz TD, Lamb FS) Am J Physiol Regul Integr Comp Physiol 2006 Aug;291(2):R481-8 38 Citations |
| 1 | Role of superoxide and angiotensin II suppression in salt-induced changes in endothelial Ca2+ signaling and NO production in rat aorta. (Zhu J, Drenjancevic-Peric I, McEwen S, Friesema J, Schulta D, Yu M, Roman RJ, Lombard JH) Am J Physiol Heart Circ Physiol 2006 Aug;291(2):H929-38 51 Citations |
| 1 | Molecular mechanisms and therapeutic strategies of chronic renal injury: physiological role of angiotensin II-induced oxidative stress in renal medulla. (Mori T, Cowley AW Jr, Ito S) J Pharmacol Sci 2006 Jan;100(1):2-8 46 Citations |
| 1 | Glial-specific ablation of angiotensinogen lowers arterial pressure in renin and angiotensinogen transgenic mice. (Sherrod M, Davis DR, Zhou X, Cassell MD, Sigmund CD) Am J Physiol Regul Integr Comp Physiol 2005 Dec;289(6):R1763-9 31 Citations |
| 1 | Cerebral vascular effects of angiotensin II: new insights from genetic models. (Faraci FM, Lamping KG, Modrick ML, Ryan MJ, Sigmund CD, Didion SP) J Cereb Blood Flow Metab 2006 Apr;26(4):449-55 89 Citations |
| 1 | Protection from angiotensin II-induced cardiac hypertrophy and fibrosis by systemic lentiviral delivery of ACE2 in rats. (Huentelman MJ, Grobe JL, Vazquez J, Stewart JM, Mecca AP, Katovich MJ, Ferrario CM, Raizada MK) Exp Physiol 2005 Sep;90(5):783-90 222 Citations |
| 2 | Angiotensin II dilates bovine adrenal cortical arterioles: role of endothelial nitric oxide. (Gauthier KM, Zhang DX, Edwards EM, Holmes B, Campbell WB) Endocrinology 2005 Aug;146(8):3319-24 22 Citations |
| 1 | Reduced angiotensin II and oxidative stress contribute to impaired vasodilation in Dahl salt-sensitive rats on low-salt diet. (Drenjancevic-Peric I, Lombard JH) Hypertension 2005 Apr;45(4):687-91 47 Citations |
| 2 | Measurement of steroid synthesis in zona glomerulosa cells by liquid chromatography-electrospray ionization-mass spectrometry: inhibition by nitric oxide. (Nithipatikom K, Holmes BB, Isbell MA, Hanke CJ, Gomez-Sanchez CE, Campbell WB) Anal Biochem 2005 Feb 15;337(2):203-10 12 Citations |
| 1 | Salt-induced ANG II suppression impairs the response of cerebral artery smooth muscle cells to prostacyclin. (Zhu J, Yu M, Friesema J, Huang T, Roman RJ, Lombard JH) Am J Physiol Heart Circ Physiol 2005 Feb;288(2):H908-13 12 Citations |
| 1 | Differential modulation of baroreflex control of heart rate by neuron- vs. glia-derived angiotensin II. (Sakai K, Chapleau MW, Morimoto S, Cassell MD, Sigmund CD) Physiol Genomics 2004 Dec 15;20(1):66-72 33 Citations |
| 1 | Early gestation dexamethasone programs enhanced postnatal ovine coronary artery vascular reactivity. (Roghair RD, Lamb FS, Miller FJ Jr, Scholz TD, Segar JL) Am J Physiol Regul Integr Comp Physiol 2005 Jan;288(1):R46-53 36 Citations |
| 2 | Chronic administration of nitric oxide reduces angiotensin II receptor type 1 expression and aldosterone synthesis in zona glomerulosa cells. (Nithipatikom K, Holmes BB, McCoy MJ, Hillard CJ, Campbell WB) Am J Physiol Endocrinol Metab 2004 Nov;287(5):E820-7 11 Citations |
| 1 | Mitogen-induced rapid phosphorylation of serine 795 of the retinoblastoma gene product in vascular smooth muscle cells involves ERK activation. (Garnovskaya MN, Mukhin YV, Vlasova TM, Grewal JS, Ullian ME, Tholanikunnel BG, Raymond JR) J Biol Chem 2004 Jun 04;279(23):24899-905 36 Citations |
| 1 | Adjacent expression of renin and angiotensinogen in the rostral ventrolateral medulla using a dual-reporter transgenic model. (Lavoie JL, Cassell MD, Gross KW, Sigmund CD) Hypertension 2004 May;43(5):1116-9 78 Citations |
| 1 | Angiotensin II-induced vascular dysfunction is mediated by the AT1A receptor in mice. (Ryan MJ, Didion SP, Mathur S, Faraci FM, Sigmund CD) Hypertension 2004 May;43(5):1074-9 77 Citations |
| 1 | Role of pressure in angiotensin II-induced renal injury: chronic servo-control of renal perfusion pressure in rats. (Mori T, Cowley AW Jr) Hypertension 2004 Apr;43(4):752-9 113 Citations |
| 1 | Ganglionic action of angiotensin contributes to sympathetic activity in renin-angiotensinogen transgenic mice. (Ma X, Sigmund CD, Hingtgen SD, Tian X, Davisson RL, Abboud FM, Chapleau MW) Hypertension 2004 Feb;43(2):312-6 27 Citations |
| 1 | ERK is regulated by sodium-proton exchanger in rat aortic vascular smooth muscle cells. (Mukhin YV, Garnovskaya MN, Ullian ME, Raymond JR) J Biol Chem 2004 Jan 16;279(3):1845-52 41 Citations |
| 1 | Characterization and application of Raman labels for confocal Raman microspectroscopic detection of cellular proteins in single cells. (Nithipatikom K, McCoy MJ, Hawi SR, Nakamoto K, Adar F, Campbell WB) Anal Biochem 2003 Nov 15;322(2):198-207 49 Citations |
| 1 | Late-gestation betamethasone enhances coronary artery responsiveness to angiotensin II in fetal sheep. (Roghair RD, Lamb FS, Bedell KA, Smith OM, Scholz TD, Segar JL) Am J Physiol Regul Integr Comp Physiol 2004 Jan;286(1):R80-8 23 Citations |
| 1 | Angiotensin II-NAD(P)H oxidase-stimulated superoxide modifies tubulovascular nitric oxide cross-talk in renal outer medulla. (Mori T, Cowley AW Jr) Hypertension 2003 Oct;42(4):588-93 90 Citations |
| 1 | Mitogen-induced activation of Na+/H+ exchange in vascular smooth muscle cells involves janus kinase 2 and Ca2+/calmodulin. (Garnovskaya MN, Mukhin YV, Turner JH, Vlasova TM, Ullian ME, Raymond JR) Biochemistry 2003 Jun 17;42(23):7178-87 28 Citations |
| 1 | Gene expression reveals vulnerability to oxidative stress and interstitial fibrosis of renal outer medulla to nonhypertensive elevations of ANG II. (Yuan B, Liang M, Yang Z, Rute E, Taylor N, Olivier M, Cowley AW Jr) Am J Physiol Regul Integr Comp Physiol 2003 May;284(5):R1219-30 27 Citations |
| 1 | Hypoxia, angiotensin-II, and norepinephrine mediated apoptosis is stimulus specific in canine failed cardiomyocytes: a role for p38 MAPK, Fas-L and cyclin D1. (Sharov VG, Todor A, Suzuki G, Morita H, Tanhehco EJ, Sabbah HN) Eur J Heart Fail 2003 Mar;5(2):121-9 43 Citations |
| 1 | High-salt diet impairs vascular relaxation mechanisms in rat middle cerebral arteries. (Lombard JH, Sylvester FA, Phillips SA, Frisbee JC) Am J Physiol Heart Circ Physiol 2003 Apr;284(4):H1124-33 65 Citations |
| 1 | Inhibition of sympathetic responses at birth in sheep by lesion of the paraventricular nucleus. (Segar JL, Ellsbury DL, Smith OM) Am J Physiol Regul Integr Comp Physiol 2002 Dec;283(6):R1395-403 14 Citations |
| 1 | Tubulovascular nitric oxide crosstalk: buffering of angiotensin II-induced medullary vasoconstriction. (Dickhout JG, Mori T, Cowley AW Jr) Circ Res 2002 Sep 20;91(6):487-93 100 Citations |
| 1 | Renal medullary nitric oxide deficit of Dahl S rats enhances hypertensive actions of angiotensin II. (Szentiványi M Jr, Zou AP, Mattson DL, Soares P, Moreno C, Roman RJ, Cowley AW Jr) Am J Physiol Regul Integr Comp Physiol 2002 Jul;283(1):R266-72 72 Citations |
| 1 | Role of 20-hydroxyeicosatetraenoic acid in the renal and vasoconstrictor actions of angiotensin II. (Alonso-Galicia M, Maier KG, Greene AS, Cowley AW Jr, Roman RJ) Am J Physiol Regul Integr Comp Physiol 2002 Jul;283(1):R60-8 137 Citations |
| 1 | Stage-dependent activation of cell cycle and apoptosis mechanisms in the right ventricle by pressure overload. (Ecarnot-Laubriet A, Assem M, Poirson-Bichat F, Moisant M, Bernard C, Lecour S, Solary E, Rochette L, Teyssier JR) Biochim Biophys Acta 2002 Apr 24;1586(3):233-42 28 Citations |
| 1 | Brain-selective overexpression of angiotensin (AT1) receptors causes enhanced cardiovascular sensitivity in transgenic mice. (Lazartigues E, Dunlay SM, Loihl AK, Sinnayah P, Lang JA, Espelund JJ, Sigmund CD, Davisson RL) Circ Res 2002 Mar 22;90(5):617-24 71 Citations |
| 1 | Angiotensin II in cardiac pressure-overload hypertrophy in fetal sheep. (Segar JL, Dalshaug GB, Bedell KA, Smith OM, Scholz TD) Am J Physiol Regul Integr Comp Physiol 2001 Dec;281(6):R2037-47 31 Citations |
| 1 | Angiotensin II and VEGF are involved in angiogenesis induced by short-term exercise training. (Amaral SL, Papanek PE, Greene AS) Am J Physiol Heart Circ Physiol 2001 Sep;281(3):H1163-9 140 Citations |
| 1 | Responses of fetal ovine systemic and umbilical arteries to angiotensin II. (Segar JL, Barna TJ, Acarregui MJ, Lamb FS) Pediatr Res 2001 Jun;49(6):826-33 17 Citations |
| 1 | Central AT1 and AT2 receptors mediate chronic intracerebroventricular angiotensin II-induced drinking in rats fed high sodium chloride diet from weaning. (Camara AK, Osborn J) Acta Physiol Scand 2001 Feb;171(2):195-201 19 Citations |
| 1 | Angiotensin II AT1 receptors preserve vasodilator reactivity in skeletal muscle resistance arteries. (Weber DS, Lombard JH) Am J Physiol Heart Circ Physiol 2001 May;280(5):H2196-202 45 Citations |
| 1 | Paradoxical regulation of short promoter human renin transgene by angiotensin ii. (Keen HL, Sigmund CD) Hypertension 2001 Feb;37(2 Pt 2):403-7 11 Citations |
| 1 | Brown Norway chromosome 13 confers protection from high salt to consomic Dahl S rat. (Cowley AW Jr, Roman RJ, Kaldunski ML, Dumas P, Dickhout JG, Greene AS, Jacob HJ) Hypertension 2001 Feb;37(2 Pt 2):456-61 178 Citations |
| 1 | Glucocorticoid modulation of cardiovascular and autonomic function in preterm lambs: role of ANG II. (Segar JL, Bedell KA, Smith OJ) Am J Physiol Regul Integr Comp Physiol 2001 Mar;280(3):R646-54 37 Citations |
| 1 | Genetic evidence that lethality in angiotensinogen-deficient mice is due to loss of systemic but not renal angiotensinogen. (Ding Y, Stec DE, Sigmund CD) J Biol Chem 2001 Mar 09;276(10):7431-6 20 Citations |
| 2 | Endothelial cell nitric oxide inhibits aldosterone synthesis in zona glomerulosa cells: modulation by oxygen. (Hanke CJ, Campbell WB) Am J Physiol Endocrinol Metab 2000 Oct;279(4):E846-54 29 Citations |
| 1 | Transgenic and knockout mice to study the renin-angiotensin system and other interacting vasoactive pathways. (Lake-Bruse KD, Sigmund CD) Curr Hypertens Rep 2000 Apr;2(2):211-6 9 Citations |
| 1 | A functional angiotensin II receptor-GFP fusion protein: evidence for agonist-dependent nuclear translocation. (Chen R, Mukhin YV, Garnovskaya MN, Thielen TE, Iijima Y, Huang C, Raymond JR, Ullian ME, Paul RV) Am J Physiol Renal Physiol 2000 Sep;279(3):F440-8 93 Citations |
| 1 | Divergent functions of angiotensin II receptor isoforms in the brain. (Davisson RL, Oliverio MI, Coffman TM, Sigmund CD) J Clin Invest 2000 Jul;106(1):103-6 175 Citations |
| 1 | Contribution of cytochrome P-450 omega-hydroxylase to altered arteriolar reactivity with high-salt diet and hypertension. (Frisbee JC, Falck JR, Lombard JH) Am J Physiol Heart Circ Physiol 2000 May;278(5):H1517-26 58 Citations |
| 1 | Elevated salt intake impairs dilation of rat skeletal muscle resistance arteries via ANG II suppression. (Weber DS, Lombard JH) Am J Physiol Heart Circ Physiol 2000 Feb;278(2):H500-6 57 Citations |
| 1 | Increased intravascular pressure does not enhance skeletal muscle arteriolar constriction to oxygen or angiotensin II. (Frisbee JC, Lombard JH) Microvasc Res 2000 Jan;59(1):176-80 3 Citations |
| 1 | Highly regulated cell type-restricted expression of human renin in mice containing 140- or 160-kilobase pair P1 phage artificial chromosome transgenes. (Sinn PL, Davis DR, Sigmund CD) J Biol Chem 1999 Dec 10;274(50):35785-93 52 Citations |
| 1 | JG cell expression and partial regulation of a human renin genomic transgene driven by a minimal renin promoter. (Sinn PL, Zhang X, Sigmund CD) Am J Physiol 1999 Oct;277(4):F634-42 19 Citations |
| 2 | Adrenal capillary endothelial cells stimulate aldosterone release through a protein that is distinct from endothelin. (Rosolowsky LJ, Hanke CJ, Campbell WB) Endocrinology 1999 Oct;140(10):4411-8 26 Citations |
| 1 | Distribution of angiotensin AT1 and AT2 receptor subtypes in the rat kidney. (Miyata N, Park F, Li XF, Cowley AW Jr) Am J Physiol 1999 Sep;277(3):F437-46 278 Citations |
| 1 | Selective potentiation of angiotensin-induced constriction of skeletal muscle resistance arteries by chronic elevations in dietary salt intake. (Weber DS, Frisbee JC, Lombard JH) Microvasc Res 1999 May;57(3):310-9 20 Citations |
| 1 | Alpha-adrenergic systems mediate chronic central AII hypertension in rats fed high sodium chloride diet from weaning. (Camara AK, Osborn JL) J Auton Nerv Syst 1999 Apr 16;76(1):28-34 4 Citations |
| 1 | Mechano- and chemoreceptor modulation of renal sympathetic nerve activity at birth in fetal sheep. (Segar JL, Smith OJ, Holley AT) Am J Physiol 1999 May;276(5):R1295-301 7 Citations |
| 1 | Local renal medullary L-NAME infusion enhances the effect of long-term angiotensin II treatment. (Szentiványi M Jr, Maeda CY, Cowley AW Jr) Hypertension 1999 Jan;33(1 Pt 2):440-5 40 Citations |
| 1 | Functionally active catalytic domain is essential for guanylyl cyclase-linked receptor mediated inhibition of human aldosterone synthesis. (Olson LJ, Ho BY, Cashdollar LW, Drewett JG) Mol Pharmacol 1998 Nov;54(5):761-9 10 Citations |
| 1 | AT1 receptors mediate chronic central nervous system AII hypertension in rats fed high sodium chloride diet from weaning. (Camara AK, Osborn JL) J Auton Nerv Syst 1998 Aug 06;72(1):16-23 13 Citations |
| 1 | Ontogeny and regulation of cardiac angiotensin types 1 and 2 receptors during fetal life in sheep. (Samyn ME, Petershack JA, Bedell KA, Mathews MS, Segar JL) Pediatr Res 1998 Sep;44(3):323-9 27 Citations |
| 1 | Effects of daily sodium intake and ANG II on cortical and medullary renal blood flow in conscious rats. (Gross V, Kurth TM, Skelton MM, Mattson DL, Cowley AW Jr) Am J Physiol 1998 May;274(5):R1317-23 45 Citations |
| 2 | Prostaglandin E2-induced aldosterone release is mediated by an EP2 receptor. (Csukas S, Hanke CJ, Rewolinski D, Campbell WB) Hypertension 1998 Feb;31(2):575-81 29 Citations |
| 1 | Effect of antenatal glucocorticoids on sympathetic nerve activity at birth in preterm sheep. (Segar JL, Lumbers ER, Nuyt AM, Smith OJ, Robillard JE) Am J Physiol 1998 Jan;274(1):R160-7 59 Citations |
| 1 | Protective effect of angiotensin II-induced increase in nitric oxide in the renal medullary circulation. (Zou AP, Wu F, Cowley AW Jr) Hypertension 1998 Jan;31(1 Pt 2):271-6 137 Citations |
| 1 | Regulation of vascular angiotensin II receptors by EGF. (Ullian ME, Raymond JR, Willingham MC, Paul RV) Am J Physiol 1997 Oct;273(4):C1241-9 19 Citations |
| 1 | Renal neurogenic mediation of intracerebroventricular angiotensin II hypertension in rats raised on high sodium chloride diet. (Osborn JL, Camara AK) Hypertension 1997 Sep;30(3 Pt 1):331-6 34 Citations |
| 1 | Histologic alterations in dermal repair after thermal injury effects of topical angiotensin II. (Rodgers KE, DeCherney AH, St Amand KM, Dougherty WR, Felix JC, Girgis WW, diZerega GS) J Burn Care Rehabil 1997;18(5):381-8 32 Citations |
| 1 | Role of endogenous ANG II and AT1 receptors in regulating arterial baroreflex responses in newborn lambs. (Segar JL, Minnick A, Nuyt AM, Robillard JE) Am J Physiol 1997 Jun;272(6 Pt 2):R1862-73 28 Citations |
| 1 | Novel natriuretic peptide receptor/guanylyl cyclase A-selective agonist inhibits angiotensin II- and forskolin-evoked aldosterone synthesis in a human zona glomerulosa cell line. (Olson LJ, Lowe DG, Drewett JG) Mol Pharmacol 1996 Aug;50(2):430-5 21 Citations |
| 1 | Differential gene expression and regulation of renal angiotensin II receptor subtypes (AT1 and AT2) during fetal life in sheep. (Robillard JE, Page WV, Mathews MS, Schutte BC, Nuyt AM, Segar JL) Pediatr Res 1995 Dec;38(6):896-904 58 Citations |
| 2 | Elevated follicular fluid angiotensin II and pregnancy outcome. (Heimler I, Rawlins RG, Binor Z, Aiman J, Raff H, Hutz RJ) Fertil Steril 1995 Mar;63(3):528-34 16 Citations |
| 1 | Inhibition of aldosterone release by hypoxia in vitro: interaction with carbon monoxide. (Raff H, Jankowski B) J Appl Physiol (1985) 1994 Feb;76(2):689-93 5 Citations |
| 1 | Role of endogenous ANG II on resetting arterial baroreflex during development. (Segar JL, Merrill DC, Robillard JE) Am J Physiol 1994 Jan;266(1 Pt 2):H52-9 34 Citations |
| 1 | Nitric oxide regulates migrating motor complex cycling and its postprandial disruption. (Sarna SK, Otterson MF, Ryan RP, Cowles VE) Am J Physiol 1993 Oct;265(4 Pt 1):G749-66 20 Citations |
| 1 | Effect of CO2/pH on the aldosterone response to hypoxia in bovine adrenal cells in vitro. (Raff H, Jankowski B) Am J Physiol 1993 Oct;265(4 Pt 2):R820-5 9 Citations |
| 1 | Assessment of changes in intrarenal blood flow in conscious rats using laser-Doppler flowmetry. (Lu S, Mattson DL, Roman RJ, Becker CG, Cowley AW Jr) Am J Physiol 1993 Jun;264(6 Pt 2):F956-62 45 Citations |
| 1 | Fatty acids may regulate aldosterone secretion and mediate some of insulin's effects on blood pressure. (Goodfriend TL, Ball DL, Elliott ME, Chabhi A, Duong T, Raff H, Schneider EG, Brown RD, Weinbergers MH) Prostaglandins Leukot Essent Fatty Acids 1993 Jan;48(1):43-50 27 Citations |
| 1 | Effect of omega-3 fatty acids on the vascular response to angiotensin in normotensive men. (Kenny D, Warltier DC, Pleuss JA, Hoffmann RG, Goodfriend TL, Egan BM) Am J Cardiol 1992 Nov 15;70(15):1347-52 79 Citations |
| 2 | Salt intake and angiotensin II alter microvessel density in the cremaster muscle of normal rats. (Hernandez I, Cowley AW Jr, Lombard JH, Greene AS) Am J Physiol 1992 Sep;263(3 Pt 2):H664-7 78 Citations |
| 1 | Cyclooxygenase products do not modulate angiotensin II-induced contractions of human chorionic plate arteries. (Sorokin G, Grant NM, Egan BM, Lombard JH) Am J Obstet Gynecol 1992 Jul;167(1):110-4 9 Citations |
| 1 | Bradykinin stimulates aldosterone release from cultured bovine adrenocortical cells through bradykinin B2 receptors. (Rosolowsky LJ, Campbell WB) Endocrinology 1992 Apr;130(4):2067-75 28 Citations |
| 1 | In-vitro effects of angiotensin II on steroid production by hamster ovarian follicles and on ultrastructure of the theca interna. (Kitzman PH, Hutz RJ) Cell Tissue Res 1992 Apr;268(1):191-6 20 Citations |
| 1 | The conversion of corticosterone to aldosterone is the site of the oxygen sensitivity of the bovine adrenal zona glomerulosa. (Brickner RC, Jankowski B, Raff H) Endocrinology 1992 Jan;130(1):88-92 18 Citations |
| 1 | Influence of angiotensin II on pressure natriuresis and renal hemodynamics in volume-expanded rats. (Mattson DL, Raff H, Roman RJ) Am J Physiol 1991 Jun;260(6 Pt 2):R1200-9 58 Citations |
| 1 | Changes in blood pressure and dipsogenic responsiveness to angiotensin II during chronic exposure of rats to cold. (Fregly MJ, Shechtman O, van Bergen P, Reeber C, Papanek PE) Pharmacol Biochem Behav 1991 Apr;38(4):837-42 29 Citations |
| 1 | Oxygen sensitivity of potassium- and angiotensin II-stimulated aldosterone release by bovine adrenal cells. (Brickner RC, Raff H) J Endocrinol 1991 Apr;129(1):43-8 5 Citations |
| 1 | Endocrine effects of ventilation, oxygenation and cord occlusion in near-term fetal sheep. (Smith FG, Smith BA, Segar JL, Robillard JE) J Dev Physiol 1991 Mar;15(3):133-8 12 Citations |
| 1 | Regional autoregulatory responses during infusion of vasoconstrictor agents in conscious dogs. (Hellebrekers LJ, Liard JF, Laborde AL, Greene AS, Cowley AW Jr) Am J Physiol 1990 Oct;259(4 Pt 2):H1270-7 30 Citations |
| 1 | Peripheral chemoreceptor control of fetal renin responses to hypoxia and hypercapnia. (Wood CE, Kane C, Raff H) Circ Res 1990 Sep;67(3):722-32 28 Citations |
| 1 | The effect of oxygen on aldosterone release from bovine adrenocortical cells in vitro: PO2 versus steroidogenesis. (Raff H, Kohandarvish S) Endocrinology 1990 Aug;127(2):682-7 12 Citations |
| 1 | Prevention of salt angiotensin II hypertension by servo control of body water. (Krieger JE, Cowley AW Jr) Am J Physiol 1990 Apr;258(4 Pt 2):H994-1003 32 Citations |
| 1 | Endothelin enhances adrenocorticotropin-stimulated aldosterone release from cultured bovine adrenal cells. (Rosolowsky LJ, Campbell WB) Endocrinology 1990 Apr;126(4):1860-6 70 Citations |
| 1 | Role of fluid volume retention in angiotensin II salt-dependent hypertension. (Cowley AW Jr, Krieger JE) Acta Physiol Scand Suppl 1990;591:100-6 6 Citations |
| 1 | Hemodynamics and blood volume in angiotensin II salt-dependent hypertension in dogs. (Krieger JE, Roman RJ, Cowley AW Jr) Am J Physiol 1989 Nov;257(5 Pt 2):H1402-12 37 Citations |
| 1 | Incorporation of hydroxyeicosatetraenoic acids into cellular lipids of adrenal glomerulosa cells: inhibition of aldosterone release by 5-HETE. (Richards CF, Campbell WB) Prostaglandins 1989 Nov;38(5):565-80 15 Citations |
| 2 | Effect of plasma sodium on aldosterone secretion during angiotensin II stimulation in normal humans. (Merrill DC, Ebert TJ, Skelton MM, Cowley AW Jr) Hypertension 1989 Aug;14(2):164-9 9 Citations |
| 1 | Low oxygen selectively inhibits aldosterone secretion from bovine adrenocortical cells in vitro. (Raff H, Ball DL, Goodfriend TL) Am J Physiol 1989 May;256(5 Pt 1):E640-4 40 Citations |
| 1 | NG-methylarginine, an inhibitor of endothelium-derived nitric oxide synthesis, is a potent pressor agent in the guinea pig: does nitric oxide regulate blood pressure in vivo? (Aisaka K, Gross SS, Griffith OW, Levi R) Biochem Biophys Res Commun 1989 Apr 28;160(2):881-6 422 Citations |
| 1 | Pressure-dependent contraction of rat juxtamedullary afferent arterioles. (Sanchez-Ferrer CF, Roman RJ, Harder DR) Circ Res 1989 Apr;64(4):790-8 62 Citations |
| 1 | Angiotensin II contributes to blood pressure maintenance in conscious rats treated with yohimbine. (Pfister SL, Keeton TK) Eur J Pharmacol 1988 May 10;149(3):377-80 1 Citation |
| 1 | Angiotensin II sensitization of aldosterone responsiveness to plasma sodium in conscious dogs. (Merrill DC, Skelton MM, Cowley AW Jr) Am J Physiol 1987 Dec;253(6 Pt 2):R832-7 3 Citations |
| 2 | Selective hypoaldosteronism due to an endogenous impairment in angiotensin II production. (Findling JW, Adams AH, Raff H) N Engl J Med 1987 Jun 25;316(26):1632-5 5 Citations |
| 1 | Hemodynamic effects of vasopressin compared with angiotensin II in conscious rats. (Osborn JW Jr, Skelton MM, Cowley AW Jr) Am J Physiol 1987 Mar;252(3 Pt 2):H628-37 52 Citations |
| 2 | The dissociation of renin and aldosterone during critical illness. (Findling JW, Waters VO, Raff H) J Clin Endocrinol Metab 1987 Mar;64(3):592-5 58 Citations |
| 1 | Cardiovascular actions of vasopressin: baroreflex modulation in the conscious rat. (Webb RL, Osborn JW Jr, Cowley AW Jr) Am J Physiol 1986 Dec;251(6 Pt 2):H1244-51 49 Citations |
| 1 | Total peripheral resistance during cardiac tamponade: adrenergic and angiotensin roles. (Cogswell TL, Bernath GA, Raff H, Hoffmann RG, Klopfenstein HS) Am J Physiol 1986 Nov;251(5 Pt 2):R916-22 14 Citations |
| 1 | Are hypertensive effects of aldosterone, angiotensin, vasopressin, and norepinephrine chronically additive? (Cowley AW Jr, Skelton MM, Merrill DC) Hypertension 1986 Apr;8(4):332-43 8 Citations |
| 1 | Effects of angiotensin, prostaglandin E2 and indomethacin on the early and late steps of aldosterone biosynthesis in isolated adrenal cells. (Campbell WB, Brady MT, Gomez-Sanchez CE) J Steroid Biochem 1986 Apr;24(4):865-70 15 Citations |
| 1 | Renin-angiotensin II-aldosterone and ACTH-cortisol control during acute hypoxemia and exercise in patients with chronic obstructive pulmonary disease. (Raff H, Levy SA) Am Rev Respir Dis 1986 Mar;133(3):396-9 25 Citations |
| 1 | Acute volume expansion decreases adrenocortical sensitivity to ACTH and angiotensin II. (Raff H, Shinsako J, Wade CE, Keil LC, Dallman MF) Am J Physiol 1985 Nov;249(5 Pt 2):R611-6 12 Citations |
| 1 | Renin-angiotensin-aldosterone system during acute hypoxemia. (Raff H) J Appl Physiol (1985) 1985 Sep;59(3):1026-7 1 Citation |
| 1 | Captopril potentiates chronotropic baroreflex responses to carotid stimuli in humans. (Ebert TJ) Hypertension 1985;7(4):602-6 34 Citations |
| 1 | Inhibition of aldosterone biosynthesis by atriopeptins in rat adrenal cells. (Campbell WB, Currie MG, Needleman P) Circ Res 1985 Jul;57(1):113-8 88 Citations |
| 1 | Absence of prostacyclin involvement in angiotensin-induced aldosterone secretion in rat adrenal cells. (Campbell WB, Gomez-Sanchez CE) Endocrinology 1985 Jul;117(1):279-86 17 Citations |
| 1 | Correlation of plasma angiotensin II concentration and plasma renin activity during acute hypoxia in dogs. (Raff H, Maselli J, Reid IA) Clin Exp Pharmacol Physiol 1985;12(1):91-4 14 Citations |
| 1 | Influence of vasopressin and angiotensin on baroreflexes in the dog. (Cowley AW Jr, Merrill D, Osborn J, Barber BJ) Circ Res 1984 Feb;54(2):163-72 59 Citations |
| 1 | Is vasopressin an important hypertensive hormone? (Lohmeier TE, Smith MJ Jr, Cowley AW Jr, Manning RD Jr, Guyton AC) Hypertension 1981;3(4):416-25 34 Citations |
| 1 | Vasopressin, fluid, and electrolyte response to chronic angiotensin II infusion. (Cowley AW Jr, Switzer SJ, Skelton MM) Am J Physiol 1981 Mar;240(3):R130-8 39 Citations |
| 1 | A possible antihypertensive mechanism of propranolol: antagonism of angiotensin II enhancement of sympathetic nerve transmission through prostaglandins. (Jackson EK, Campbell WB) Hypertension 1981;3(1):23-33 27 Citations |
| 1 | Role of prostaglandins in angiotensin-induced steriodogenesis absence of an effect by prostaglandin E2. (Campbell WB, Gomez-Sanchez CE, Adams BV) Hypertension 1980;2(4):471-6 35 Citations |
| 1 | The concept of autoregulation of total blood flow and its role in hypertension. (Cowley AW Jr) Am J Med 1980 Jun;68(6):906-16 46 Citations |
| 1 | Inhibition of angiotensin II potentiation of sympathetic nerve activity by beta-adrenergic antagonists. (Jackson EK, Campbell WB) Hypertension 1980;2(1):90-6 12 Citations |
| 1 | Effect of chronic intrarenal prostaglandin E2 infusion and angiotensin II blockade on arterial pressure in the dog. (Hockel GM, Cowley AW Jr) Adv Prostaglandin Thromboxane Res 1980;7:1061-5 3 Citations |
| 1 | Attenuation of angiotensin II- and III-induced aldosterone release by prostaglandin synthesis inhibitors. (Campbell WB, Gomez-Sanchez CE, Adams BV, Schmitz JM, Itskovitz HD) J Clin Invest 1979 Dec;64(6):1552-7 53 Citations |
| 1 | Effect of sodium depletion on the steroidogenic and pressor actions of angiotensin in the rat. (Campbell WB, Schmitz JM, Itskovitz HD) Clin Sci (Lond) 1979 Apr;56(4):325-33 6 Citations |
| 1 | (7-Ile) angiotensin III: a relatively selective antagonist of angiotensin steroidogenesis. (Campbell WB, Schmitz JM) Eur J Pharmacol 1979 Mar 01;54(3):209-16 13 Citations |
| 1 | Hypertensive and renal effects of chronic low level intrarenal angiotensin infusion in the dog. (Lohmeier TE, Cowley AW Jr) Circ Res 1979 Feb;44(2):154-60 60 Citations |
| 1 | Modulation of adrenergic transmission by angiotensins in the perfused rat mesentery. (Campbell WB, Jackson EK) Am J Physiol 1979 Feb;236(2):H211-7 66 Citations |
| 1 | Effect of alterations in dietary potassium on the pressor and steroidogenic effects of angiotensins II and III. (Campbell WB, Schmitz JM) Endocrinology 1978 Dec;103(6):2098-104 39 Citations |
| 1 | Subpressor angiotensin infusion, renal sodium handling, and salt-induced hypertension in the dog. (DeClue JW, Guyton AC, Cowley AW Jr, Coleman TG, Norman RA Jr, McCaa RE) Circ Res 1978 Oct;43(4):503-12 |
| 1 | Failure of chronic aldosterone infusion to increase arterial pressure in dogs with angiotensin-induced hypertension. (Lohmeier TE, Cowley AW Jr, DeClue JW, Guyton AC) Circ Res 1978 Sep;43(3):381-90 20 Citations |
| 1 | The relationship between body fluid volume, sodium ion concentration, and sensitivity to pressor effect of angiotensin II in dogs. (Cowley AW Jr, Lohmeier TE) Circ Res 1978 Apr;42(4):503-11 9 Citations |
| 1 | Perspective on the physiology of hypertension. (Cowley AW Jr) Cardiovasc Clin 1978;9(1):1-22 4 Citations |
| 1 | Effects of endogenous angiotensin II on renal sodium excretion and renal hemodynamics. (Lohmeier TE, Cowley AW Jr, Trippodo NC, Hall JE, Guyton AC) Am J Physiol 1977 Nov;233(5):F388-95 70 Citations |
| 1 | Intrarenal control of electrolyte excretion by angiotensin II. (Hall JE, Guyton AC, Trippodo NC, Lohmeier TE, McCaa RE, Cowley AW Jr) Am J Physiol 1977 Jun;232(6):F538-44 77 Citations |
| 1 | The adrenal and vascular effects of angiotensin II and III in sodium depleted rats. (Campbell WB, Schmitz JM, Itskovitz HD) Life Sci 1977 Mar 01;20(5):803-9 10 Citations |
| 1 | Angiotensin II antagonists in dehydrated rabbits without baroreceptor reflexes. (Trippodo NC, Coleman TG, Cowley AW Jr, Guyton AC) Am J Physiol 1977 Feb;232(2):H110-3 8 Citations |
| 1 | (Des-Asp1) angiotensin I: a study of its pressor and steroidogenic activities in conscious rats. (Campbell WB, Schmitz JM, Itskovitz HD) Endocrinology 1977 Jan;100(1):46-51 28 Citations |
| 1 | Synthesis of endocrine control in hypertension. (Guyton AC, Cowley AW Jr, Young DB, DeClue JW, Manning RD Jr, Fagard R, McCaa RE, Trippodo NC) Clin Sci Mol Med Suppl 1976 Dec;3:319s-320s 3 Citations |
| 1 | Renal responses to slight elevations of renal arterial plasma angiotensin II concentration in dogs. (Fagard RH, Cowley AW Jr, Navar LG, Langford HG, Guyton AC) Clin Exp Pharmacol Physiol 1976;3(6):531-8 26 Citations |
| 1 | Organ specificity of angiotensin II and Des-aspartyl angiotensin II in the conscious rat. (Campbell WB, Pettinger WA) J Pharmacol Exp Ther 1976 Aug;198(2):450-6 23 Citations |
| 1 | Integration and control of circulatory function. (Guyton AC, Cowley AW Jr, Young DB, Coleman TG, Hall JE, DeClue JW) Int Rev Physiol 1976;9:341-85 50 Citations |
| 1 | Quantitative analysis of the acute response to haemorrhage of the renin-angiotensin-vasoconstrictor feedback loop in areflexic dogs. (Brough RB Jr, Cowley AW Jr, Guyton AC) Cardiovasc Res 1975 Nov;9(6):722-33 16 Citations |
| 1 | Angiotensin and the hemodynamics of chronic salt deprivation. (Coleman TG, Cowley AW Jr, Guyton AC) Am J Physiol 1975 Jul;229(1):167-71 20 Citations |
| 1 | Vasodilating antihypertensive drug-induced aldosterone release--a study of endogenous angiotensin-mediated aldosterone release in the rat. (Campbell WB, Pettinger WA, Keeton K, Brooks SN) J Pharmacol Exp Ther 1975 Apr;193(1):166-75 15 Citations |
| 1 | Angiotensin II- and angiotensin 3-induced aldosterone release vivo in the rat. (Campbell WB, Brooks SN, Pettinger WA) Science 1974 May 31;184(4140):994-6 107 Citations |
| 1 | Hypertension: a disease of abnormal circulatory control. (Guyton AC, Cowley AW Jr, Coleman TG, DeClue JW, Norman RA, Manning RD) Chest 1974 Mar;65(3):328-38 18 Citations |
| 1 | Letter: Potassium, aldosterone and renin inter-relations. (Kleinman JG, Hamburger RJ, Schwartz JH, McNeil JS, Flamenbaum W) N Engl J Med 1974 Feb 14;290(7):408 |
| 1 | Dynamic functions of angiotensin in hypertension: renal effects as the basic cause of chronic hypertension. (Guyton AC, Cowley AW Jr, Fagard R, Langford HG, McCaa RE, DeClue JW, Coleman TG, Barnes GE) Acta Physiol Lat Am 1974;24(5):592-5 1 Citation |
| 1 | Influence of acute stimuli on plasma aldosterone concentration in anephric man and kidney allograft recipients. (McCaa RE, Read VH, Cowley AW Jr, Bower JD, Smith GV, McCaa CS) Circ Res 1973 Sep;33(3):313-22 |
| 1 | Stimulation of aldosterone secretion by hemorrhage in dogs after nephrectomy and decapitation. (McCaa RE, McCaa CS, Cowley AW Jr, Ott CE, Guyton AC) Circ Res 1973 Mar;32(3):356-62 13 Citations |
| 1 | Systems analysis of arterial pressure regulation and hypertension. (Guyton AC, Coleman TG, Cowley AW Jr, Liard JF, Norman RA Jr, Manning RD Jr) Ann Biomed Eng 1972 Dec;1(2):254-81 98 Citations |
| 1 | Quantification of intermediate steps in the renin-angiotensin-vasoconstrictor feedback loop in the dog. (Cowley AW Jr, Guyton AC) Circ Res 1972 May;30(5):557-66 21 Citations |