World's Best Scientists 2026 revealed!

D-Index & Metrics

Biology and Biochemistry

D-Index
73
Citations
15720
World Ranking
6060
National Ranking
2852

Medicine

D-Index
74
Citations
15952
World Ranking
19501
National Ranking
9709

Overview

Dorothy E. Vatner is affiliated with Rutgers, The State University of New Jersey in the United States. Their research primarily spans the field of Medicine, with significant contributions in subfields including Physiology, Rehabilitation, Cardiology and Cardiovascular Medicine, Molecular Biology, and Pathology and Forensic Medicine.

The scientist's work focuses on a range of topics within biomedical sciences. Key areas of study include Adipose Tissue and Metabolism, Exercise and Physiological Responses, Cardiac Ischemia and Reperfusion, Muscle Metabolism and Nutrition, Dietary Effects on Health, Gut Microbiota and Health, and Diet and Metabolism Studies.

Publications by Dorothy E. Vatner cover notable journals and demonstrate interdisciplinary research interests. Frequent publication venues include:

  • The FASEB Journal
  • Circulation
  • American Journal of Physiology-Heart and Circulatory Physiology
  • Medicine & Science in Sports & Exercise
  • Ageing Research Reviews

Recent papers demonstrate the scientist's engagement with topics related to vascular biology, aging, and metabolic regulation. Key recent publications are:

  • "Healthful aging mediated by inhibition of oxidative stress," 2020, Ageing Research Reviews
  • "Vascular Stiffness in Aging and Disease," 2021, Frontiers in Physiology
  • "Secreted frizzled-related protein 2, a novel mechanism to induce myocardial ischemic protection through angiogenesis," 2020, Basic Research in Cardiology
  • "Mechanisms of increased vascular stiffness down the aortic tree in aging, premenopausal female monkeys," 2020, American Journal of Physiology-Heart and Circulatory Physiology
  • "Exercise enhancement by RGS14 disruption is mediated by brown adipose tissue," 2023, Aging Cell

Their frequent co-authors include Stephen F. Vatner, Marko Oydanich, Denis Babici, Jie Zhang, and Sara C. Campbell. Collaboration with these researchers reflects multidisciplinary efforts spanning physiology, cardiovascular biology, and metabolism.

Best Publications

  • Downregulation of MiR-199a Derepresses Hypoxia-Inducible Factor-1α and Sirtuin 1 and Recapitulates Hypoxia Preconditioning in Cardiac Myocytes

    Shweta Rane;Minzhen He;Danish Sayed;Himanshu Vashistha

  • AUTOPHAGY IN CHRONICALLY ISCHEMIC MYOCARDIUM

    Lin Yan;Dorothy E. Vatner;Song-Jung Kim;Hui Ge

  • MicroRNA-21 Targets Sprouty2 and Promotes Cellular Outgrowths

    Danish Sayed;Shweta Rane;Jacqueline Lypowy;Minzhen He

  • Type 5 Adenylyl Cyclase Disruption Increases Longevity and Protects Against Stress

    Lin Yan;Dorothy E. Vatner;J. Patrick O'Connor;Andreas Ivessa

  • Short Communication: Vascular Smooth Muscle Cell Stiffness As a Mechanism for Increased Aortic Stiffness With Aging

    Hongyu Qiu;Yi Zhu;Yi Zhu;Zhe Sun;Jerome P. Trzeciakowski

  • Adverse Effects of Chronic Endogenous Sympathetic Drive Induced by Cardiac Gsα Overexpression

    Mitsunori Iwase;Sanford P. Bishop;Masami Uechi;Dorothy E. Vatner

  • Activation of Mst1 causes dilated cardiomyopathy by stimulating apoptosis without compensatory ventricular myocyte hypertrophy.

    Shimako Yamamoto;Guiping Yang;Daniela Zablocki;Jing Liu

  • Echocardiography in Mice

    Shumin Gao;David Ho;Dorothy E. Vatner;Stephen F. Vatner

  • Activation of the Cardiac Proteasome During Pressure Overload Promotes Ventricular Hypertrophy

    Christophe Depre;Qian Wang;Lin Yan;Nadia Hedhli

  • Disruption of type 5 adenylyl cyclase gene preserves cardiac function against pressure overload

    Satoshi Okumura;Gen Takagi;Jun-ichi Kawabe;Guiping Yang

  • Aging Increases Aortic MMP-2 Activity and Angiotensin II in Nonhuman Primates

    Mingyi Wang;Gen Takagi;Kuniya Asai;Ranilo G. Resuello

  • Peripheral Vascular Endothelial Dysfunction and Apoptosis in Old Monkeys

    Kuniya Asai;Raymond K. Kudej;You Tang Shen;Gui Ping Yang

  • Cardiac-specific overexpression of AT1 receptor mutant lacking Gαq/Gαi coupling causes hypertrophy and bradycardia in transgenic mice

    Peiyong Zhai;Mitsutaka Yamamoto;Jonathan Galeotti;Jing Liu

  • Apoptosis of Cardiac Myocytes in Gsα Transgenic Mice

    Yong Jian Geng;Yoshihiro Ishikawa;Dorothy E. Vatner;Thomas E. Wagner;Thomas E. Wagner

  • Myocardial beta-adrenergic receptor function during the development of pacing-induced heart failure.

    K Kiuchi;R P Shannon;K Komamura;D J Cohen

  • Cardiomyopathy induced by cardiac Gs alpha overexpression

    Mitsunori Iwase;Masami Uechi;Dorothy E. Vatner;Kuniya Asai

  • The MEKK1-JNK pathway plays a protective role in pressure overload but does not mediate cardiac hypertrophy.

    Junichi Sadoshima;Olivier Montagne;Qian Wang;Guiping Yang

  • Glycation end-product cross-link breaker reduces collagen and improves cardiac function in aging diabetic heart

    Jing Liu;Malthi R. Masurekar;Dorothy E. Vatner;Garikiparthy N. Jyothirmayi

  • Increased vascular smooth muscle cell stiffness: a novel mechanism for aortic stiffness in hypertension

    Nancy L. Sehgel;Yi Zhu;Zhe Sun;Jerome P. Trzeciakowski

  • Program of Cell Survival Underlying Human and Experimental Hibernating Myocardium

    Christophe Depre;Song-Jung Kim;Anna S. John;Yan Hong Huang

Frequent Co-Authors

Stephen F. Vatner
Stephen F. Vatner Rutgers, The State University of New Jersey
Junichi Sadoshima
Junichi Sadoshima Rutgers, The State University of New Jersey
Bin Tian
Bin Tian The Wistar Institute
Gerald A. Meininger
Gerald A. Meininger University of Missouri
Jie Zhang
Jie Zhang Newcastle University
Robert M. Graham
Robert M. Graham Victor Chang Cardiac Research Institute
Thomas Wagner
Thomas Wagner Heriot-Watt University
Johan Auwerx
Johan Auwerx École Polytechnique Fédérale de Lausanne
Arnold B. Rabson
Arnold B. Rabson Rutgers, The State University of New Jersey
Yibin Wang
Yibin Wang University of California, Los Angeles

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