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Updated: Jan 8, 2026

Parallel Measurement of Circadian Clock Gene Expression and Hormone Secretion in Human Primary Cell Cultures
Published on: November 11, 2016
Adipose Tissue Circadian Clocks: Implications for Metabolism and Metabolic Dysfunction
Peiyuan Zeng1, Michael A Hill2, Jianbo Wu1
1Basic Medicine Research Innovation Center for Cardiometabolic Diseases, Ministry of Education Laboratory for Cardiovascular Pharmacology, Department of Pharmacology, School of Pharmacy Luzhou Municipal Key Laboratory of Thrombosis and Vascular Biology Southwest Medical University, Luzhou, China.
Abstract:
Adipose tissue, beyond its role as a fat storage depot, functions as an endocrine organ, secreting signaling molecules systemically and via paracrine mechanisms (particularly in perivascular and ectopic fat). These diverse functions are crucial for regulating metabolic and cardiovascular health. The circadian clock, an internal ~24-h biological rhythm, orchestrates physiological processes to adapt to environmental cycles (e.g., light, temperature, food). This involves linking gene transcription/translation events to the external environment. Recent studies demonstrate circadian expression patterns in adipose tissue for various genes and metabolic pathways. Disrupted circadian rhythms are implicated in adipose tissue and metabolic dysfunction. Understanding adipose tissue circadian mechanisms may provide strategies to mitigate metabolic and associated cardiovascular disease risk. This review summarizes recent findings on the relationship between circadian rhythms and adipose tissue metabolism, explores how an adipose clock contributes to the pathogenesis of metabolic diseases, and discusses potential therapeutic approaches targeting the adipose tissue clock.
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