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Gautham Yepuri

Showing results (1-10 of 22) with videos related to

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Methodist Debakey Cardiovascular Journal|December 4, 2015
Endothelium-Derived Nitric Oxide as an Antiatherogenic Mechanism: Implications for TherapyRoman A Sukhovershin, Gautham Yepuri, Yohannes T Ghebremariam
The FEBS Journal|February 10, 2021
Heme & RAGE: A new opportunistic relationship?Gautham Yepuri, Alexander Shekhtman, Ann Marie Schmidt, et al.
Frontiers in Endocrinology|March 29, 2021
Aldose Reductase: An Emerging Target for Development of Interventions for Diabetic Cardiovascular ComplicationsSravya Jannapureddy, Mira Sharma, Gautham Yepuri, et al.
The Journal of Experimental Medicine|July 20, 2021
Macrophage-adipocyte communication and cardiac remodelingGautham Yepuri, Syed Nurul Hasan, Ann Marie Schmidt, et al.
Frontiers in Aging|January 1, 2025
The aldose reductase inhibitors AT-001, AT-003 and AT-007 attenuate human keratinocyte senescenceGautham Yepuri, Kushie Kancharla, Riccardo Perfetti, et al.
Frontiers in Physiology|September 26, 2017
Arginase-II Deficiency Extends Lifespan in MiceYuyan Xiong, Gautham Yepuri, Jean-Pierre Montani, et al.
Diabetes|March 31, 2017
Arginase-II Promotes Tumor Necrosis Factor-α Release From Pancreatic Acinar Cells Causing β-Cell Apoptosis in AgingYuyan Xiong, Gautham Yepuri, Sevil Necetin, et al.
Circulation Research|May 12, 2016
Proton Pump Inhibitors Accelerate Endothelial SenescenceGautham Yepuri, Roman Sukhovershin, Timo Z Nazari-Shafti, et al.
Aging Cell|August 30, 2012
Positive crosstalk between arginase-II and S6K1 in vascular endothelial inflammation and agingGautham Yepuri, Srividya Velagapudi, Yuyan Xiong, et al.
Autophagy|December 9, 2014
ARG2 impairs endothelial autophagy through regulation of MTOR and PRKAA/AMPK signaling in advanced atherosclerosisYuyan Xiong, Gautham Yepuri, Michael Forbiteh, et al.
Pageof 3

Showing results (1-10 of 22) with videos related to

Sort By:
Pageof 3
Methodist Debakey Cardiovascular Journal|December 4, 2015
Endothelium-Derived Nitric Oxide as an Antiatherogenic Mechanism: Implications for TherapyRoman A Sukhovershin, Gautham Yepuri, Yohannes T Ghebremariam
The FEBS Journal|February 10, 2021
Heme & RAGE: A new opportunistic relationship?Gautham Yepuri, Alexander Shekhtman, Ann Marie Schmidt, et al.
Frontiers in Endocrinology|March 29, 2021
Aldose Reductase: An Emerging Target for Development of Interventions for Diabetic Cardiovascular ComplicationsSravya Jannapureddy, Mira Sharma, Gautham Yepuri, et al.
The Journal of Experimental Medicine|July 20, 2021
Macrophage-adipocyte communication and cardiac remodelingGautham Yepuri, Syed Nurul Hasan, Ann Marie Schmidt, et al.
Frontiers in Aging|January 1, 2025
The aldose reductase inhibitors AT-001, AT-003 and AT-007 attenuate human keratinocyte senescenceGautham Yepuri, Kushie Kancharla, Riccardo Perfetti, et al.
Frontiers in Physiology|September 26, 2017
Arginase-II Deficiency Extends Lifespan in MiceYuyan Xiong, Gautham Yepuri, Jean-Pierre Montani, et al.
Diabetes|March 31, 2017
Arginase-II Promotes Tumor Necrosis Factor-α Release From Pancreatic Acinar Cells Causing β-Cell Apoptosis in AgingYuyan Xiong, Gautham Yepuri, Sevil Necetin, et al.
Circulation Research|May 12, 2016
Proton Pump Inhibitors Accelerate Endothelial SenescenceGautham Yepuri, Roman Sukhovershin, Timo Z Nazari-Shafti, et al.
Aging Cell|August 30, 2012
Positive crosstalk between arginase-II and S6K1 in vascular endothelial inflammation and agingGautham Yepuri, Srividya Velagapudi, Yuyan Xiong, et al.
Autophagy|December 9, 2014
ARG2 impairs endothelial autophagy through regulation of MTOR and PRKAA/AMPK signaling in advanced atherosclerosisYuyan Xiong, Gautham Yepuri, Michael Forbiteh, et al.
Pageof 3