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American Journal of Physiology. Renal Physiology|March 14, 2022
βENaC and ASIC2 associate in VSMCs to mediate pressure-induced constriction in the renal afferent arterioleYan Lu, David E Stec, Ruisheng Liu, et al.
Transplantation Reviews (Orlando, Fla.)|July 10, 2018
Bilirubin, a new therapeutic for kidney transplant?Vikram L Sundararaghavan, Sivjot Binepal, David E Stec, et al.
American Journal of Physiology. Regulatory, Integrative and Comparative Physiology|December 30, 2006
HO-1 induction lowers blood pressure and superoxide production in the renal medulla of angiotensin II hypertensive miceTrinity Vera, Silvia Kelsen, Licy L Yanes, et al.
Trends in Endocrinology and Metabolism: TEM|March 2, 2015
Biliverdin reductase isozymes in metabolismLuke O'Brien, Peter A Hosick, Kezia John, et al.
Frontiers in Endocrinology|September 3, 2024
Mice lacking ASIC2 and βENaC are protected from high-fat-diet-induced metabolic syndromeMadison Hamby, David E Stec, Emily Hildebrandt, et al.
Current Pharmaceutical Biotechnology|December 29, 2011
Role of carbon monoxide in kidney function: is a little carbon monoxide good for the kidney?Eva Csongradi, Luis A Juncos, Heather A Drummond, et al.
Kidney360|July 21, 2025
Role of Liver-Derived Ketones, Hepatokines, and Metabolites in the Regulation of Renal FunctionGertrude Arthur, Michael I Adenawoola, Sally Wahba, et al.
Brain Research|February 8, 2003
Non-adrenergic exploratory behavior induced by moxonidine at mildly hypotensive dosesHe Zhu, Ian A Paul, David E Stec, et al.
American Journal of Hypertension|December 10, 2024
The Role of Renal Medullary Bilirubin and Biliverdin Reductase in Angiotensin II-Dependent HypertensionGertrude Arthur, Andrew R Wasson, Ross E Straughan, et al.
Hypertension (Dallas, Tex. : 1979)|February 9, 2005
Fenofibrate prevents the development of angiotensin II-dependent hypertension in miceTrinity Vera, Montoya Taylor, Quinn Bohman, et al.
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