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Joseph Bass

Northwestern University · US
Area of research
Endocrine and Autonomic Systems · Physiology
Research interest
Research interests include Circadian rhythm and melatonin, Dietary Effects on Health, Sleep and Wakefulness Research, and Adipose Tissue and Metabolism.
h-index
48
citations
20,300
works
138
NIH funding
primary concept
Biology
email

Recent publications

Adipocyte NADH dehydrogenase reverses circadian and diet-induced metabolic syndrome.
2026cited by 1position: contributordoi
A role for the cholinergic neuron circadian clock in RNA metabolism and mediating neurodegeneration.
2026cited by 0position: contributordoi
The time is now: accounting for time-of-day effects to improve reproducibility and translation of metabolism research
Nature Metabolism 2025cited by 18position: middledoi
Control of circadian muscle glucose metabolism through the BMAL1-HIF axis in obesity.
2025cited by 11position: contributordoi
From reactive to proactive: Continuous protein monitoring for preventive health care.
2025cited by 5position: contributordoi
SGLT2 inhibition protects kidney function by SAM-dependent epigenetic repression of inflammatory genes under metabolic stress
Journal of Clinical Investigation 2025cited by 4position: contributordoi
Interorgan rhythmicity as a feature of healthful metabolism.
2024cited by 30position: contributordoi
Mitochondria regulate proliferation in adult cardiac myocytes.
2024cited by 15position: contributordoi
When a calorie is not just a calorie: Diet quality and timing as mediators of metabolism and healthy aging
Cell Metabolism 2023cited by 87position: middledoi
Engineered calprotectin-sensing probiotics for IBD surveillance in humans.
2023cited by 30position: contributordoi
Dual gut hormone receptor agonists for diabetes and obesity.
2023cited by 17position: contributordoi
Gastric bypass alters diurnal feeding behavior and reprograms the hepatic clock to regulate endogenous glucose flux
JCI Insight 2023cited by 3position: middledoi
Gastric bypass alters diurnal feeding behavior and reprograms the hepatic clock to regulate endogenous glucose flux
JCI Insight 2023cited by 2position: contributordoi
Time-restricted feeding mitigates obesity through adipocyte thermogenesis.
2022cited by 127position: contributordoi
Muscle mitochondrial remodeling by intermittent glucocorticoid drugs requires an intact circadian clock and muscle PGC1α.
2022cited by 30position: contributordoi
Circadian NAD(P)(H) cycles in cell metabolism.
2022cited by 16position: contributordoi
P2Y1 purinergic receptor identified as a diabetes target in a small-molecule screen to reverse circadian β-cell failure.
2022cited by 10position: contributordoi
mTOR regulation of metabolism limits LPS-induced monocyte inflammatory and procoagulant responses.
2022cited by 8position: contributordoi
Author response: P2Y1 purinergic receptor identified as a diabetes target in a small-molecule screen to reverse circadian β-cell failure
2022cited by 1position: contributordoi
Circadian Mechanisms in Medicine
New England Journal of Medicine 2021cited by 496position: lastdoi
NADH inhibition of SIRT1 links energy state to transcription during time-restricted feeding.
2021cited by 63position: contributordoi
Roadmap on biology in time varying environments
Physical Biology 2021cited by 39position: middledoi
Understanding Circadian Mechanisms of Sudden Cardiac Death: A Report From the National Heart, Lung, and Blood Institute Workshop, Part 1: Basic and Translational Aspects
Circulation Arrhythmia and Electrophysiology 2021cited by 15position: middledoi
Understanding Circadian Mechanisms of Sudden Cardiac Death: A Report From the National Heart, Lung, and Blood Institute Workshop, Part 1: Basic and Translational Aspects.
2021cited by 12position: contributordoi
Understanding Circadian Mechanisms of Sudden Cardiac Death: A Report From the National Heart, Lung, and Blood Institute Workshop, Part 2: Population and Clinical Considerations.
2021cited by 8position: contributordoi
Pharmacologic rescue of circadian β-cell failure through P2Y1 purinergic receptor identified by small-molecule screen
2021cited by 0position: contributordoi
You are when you eat: on circadian timing and energy balance.
2021cited by 0position: contributordoi
Decision letter: Assessing the effects of stress on feeding behaviors in laboratory mice
2021cited by 0position: contributordoi
NAD+ Controls Circadian Reprogramming through PER2 Nuclear Translocation to Counter Aging
Molecular Cell 2020cited by 182position: lastdoi
NAD<sup>+</sup> Controls Circadian Reprogramming through PER2 Nuclear Translocation to Counter Aging.
2020cited by 143position: contributordoi

Grants

No grants ingested yet.

Frequent collaborators

· 23 papers (2019–2026)Daniel C. Levine · University of California, San Francisco6 papers (2013–2023)Kathryn Moynihan Ramsey · Northwestern University5 papers (2012–2020)Chiaki Omura · Northwestern University5 papers (2013–2020)Kathryn M. Ramsey · Northwestern University5 papers (2021–2026)Clara Bien Peek · Northwestern University5 papers (2013–2020)Joseph S. Takahashi · Howard Hughes Medical Institute4 papers (2012–2019)Biliana Marcheva · Northwestern University4 papers (2022–2026)Chelsea Hepler · Northwestern University4 papers (2021–2026)J Cedernaes · Northwestern University4 papers (2021–2023)Clara B. Peek · Laboratory of Molecular Genetics4 papers (2019–2026) · 3 papers (2015–2020)Navdeep S. Chandel · Cancer Research Center3 papers (2021–2026)Daniel C. Levine · University of California, San Francisco3 papers (2019–2023)Benjamin J Weidemann · Northwestern University3 papers (2022–2022)Jonathan Cedernaes · Science for Life Laboratory3 papers (2019–2023)Biliana Marcheva · Northwestern University3 papers (2013–2019)Brian P. Delisle · University of Kentucky3 papers (2021–2021)Christopher A. Bradfield · University of Wisconsin System2 papers (2015–2019)Alison H. Affinati · Ann Arbor Center for Independent Living2 papers (2013–2020)