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Aleksey V. Matveyenko

Mayo Clinic · US
Area of research
Surgery · Endocrine and Autonomic Systems
Research interest
Research interests include Pancreatic function and diabetes, Circadian rhythm and melatonin, Diabetes and associated disorders, and Dietary Effects on Health.
h-index
45
citations
7,898
works
161
NIH funding
primary concept
Biology
email

Recent publications

Melatonin improves postprandial hypoglycemia: an unusual presentation of insulinoma.
2026cited by 0position: contributordoi
Emerin is an effector of oncogenic KRAS-driven nuclear dynamics in pancreatic cancer
JCI Insight 2025cited by 3position: contributordoi
ST8Sia6 overexpression protects pancreatic β cells from spontaneous autoimmune diabetes in nonobese diabetic mice
Journal of Clinical Investigation 2025cited by 2position: contributordoi
Heterogeneous enhancer states orchestrate β cell responses to metabolic stress.
2024cited by 7position: contributordoi
Diabetes-associated Genetic Variation in <i>MTNR1B</i> and Its Effect on Islet Function.
2024cited by 0position: contributordoi
Glucagon-like peptide-1 receptor blockade impairs islet secretion and glucose metabolism in humans
Journal of Clinical Investigation 2023cited by 9position: contributordoi
A transcriptomics-guided drug target discovery strategy identifies receptor ligands for lung regeneration.
2022cited by 31position: contributordoi
The nuclear receptor REV-ERBα is implicated in the alteration of β-cell autophagy and survival under diabetogenic conditions.
2022cited by 12position: contributordoi
Induction of Core Circadian Clock Transcription Factor Bmal1 Enhances β-Cell Function and Protects Against Obesity-Induced Glucose Intolerance.
2021cited by 52position: contributordoi
Time-restricted feeding prevents deleterious metabolic effects of circadian disruption through epigenetic control of β cell function
Science Advances 2021cited by 50position: lastdoi
Time-restricted feeding prevents deleterious metabolic effects of circadian disruption through epigenetic control of β cell function.
2021cited by 47position: contributordoi
Live-cell imaging of glucose-induced metabolic coupling of β and α cell metabolism in health and type 2 diabetes
Communications Biology 2021cited by 41position: middledoi
Insulin Pulse Characteristics and Insulin Action in Non-diabetic Humans.
2021cited by 4position: contributordoi
Accelerated osteocyte senescence and skeletal fragility in mice with type 2 diabetes
JCI Insight 2020cited by 112position: contributordoi
Proinflammatory Cytokine Interleukin 1β Disrupts β-cell Circadian Clock Function and Regulation of Insulin Secretion
Endocrinology 2020cited by 27position: contributordoi
Diabetes-associated genetic variation in TCF7L2 alters pulsatile insulin secretion in humans
JCI Insight 2020cited by 22position: middledoi
Diabetes-associated genetic variation in TCF7L2 alters pulsatile insulin secretion in humans.
2020cited by 19position: contributordoi
It's about time: clocks in the developing lung.
2020cited by 14position: contributordoi
mTORC1-to-AMPK switching underlies β cell metabolic plasticity during maturation and diabetes
Journal of Clinical Investigation 2019cited by 125position: middledoi
mTORC1 to AMPK switching underlies β-cell metabolic plasticity during maturation and diabetes.
2019cited by 103position: contributordoi
Bmal1 is required for beta cell compensatory expansion, survival and metabolic adaptation to diet-induced obesity in mice
Diabetologia 2016cited by 77position: lastdoi
DNA methylation directs functional maturation of pancreatic β cells
Journal of Clinical Investigation 2015cited by 157position: middledoi
Activation of Melatonin Signaling Promotes β-Cell Survival and Function
Molecular Endocrinology 2015cited by 80position: lastdoi
Reciprocal Regulation of Hepatic and Adipose Lipogenesis by Liver X Receptors in Obesity and Insulin Resistance
Cell Metabolism 2013cited by 141position: middledoi
Consequences of Exposure to Light at Night on the Pancreatic Islet Circadian Clock and Function in Rats
Diabetes 2013cited by 132position: lastdoi
β-Cell Failure in Type 2 Diabetes: A Case of Asking Too Much of Too Few?
Diabetes 2013cited by 121position: middledoi
Chronic GLP-1 Receptor Activation by Exendin-4 Induces Expansion of Pancreatic Duct Glands in Rats and Accelerates Formation of Dysplastic Lesions and Chronic Pancreatitis in the KrasG12D Mouse Model
Diabetes 2012cited by 247position: middledoi
Pulsatile Portal Vein Insulin Delivery Enhances Hepatic Insulin Action and Signaling
Diabetes 2012cited by 163position: firstdoi

Grants

No grants ingested yet.

Frequent collaborators

· 16 papers (2019–2026)Adrian Vella · University of Luxembourg5 papers (2020–2024)Peter C. Butler · Brigham and Women's Hospital4 papers (2012–2021) · 3 papers (2021–2025)Chiara Dalla Man · Mayo Clinic in Florida3 papers (2020–2024)Tatyana Gurlo · University of California, Los Angeles3 papers (2012–2021)Claudio Cobelli · University of Padua2 papers (2012–2020)Tamás Ördög · Mayo Clinic2 papers (2021–2021)Tu Wen Hsu · University of California, Los Angeles2 papers (2013–2016)Kuntol Rakshit · Mayo Clinic in Arizona2 papers (2016–2021)Chiara Dalla Man · University of Padua2 papers (2012–2020)David Kirakossian · Kaiser Permanente Santa Clara Medical Center2 papers (2012–2012)Suneil K. Koliwad · BioSurfaces (United States)2 papers (2019–2019)Claudio Cobelli · Ithaca College2 papers (2021–2024)Matthias Hebrok · University of California, San Francisco2 papers (2015–2019)Anil Bhushan · University of California, San Francisco2 papers (2015–2019)Christopher S. Colwell · University of California, Los Angeles2 papers (2013–2021)Yuval Dor · Ludwig-Maximilians-Universität München2 papers (2019–2019)Giuseppe De Nicolao · University of Pavia2 papers (2020–2020)Safia Costes · Centre National de la Recherche Scientifique2 papers (2013–2015)