Aug 2026· Current Obesity Reports· Vol 15· 0 citations· 215 references
Medicine
TL;DR
Overall, adipose tissue browning represents a promising component of a systems-based approach to MASLD and should focus on integrating mechanistic insights with clinical investigation to clarify its therapeutic potential and to identify strategies that enable durable and patient-specific metabolic benefits.
Abstract
Metabolic dysfunction–associated steatotic liver disease (MASLD) is an increasingly prevalent complication of obesity and metabolic dysregulation, with limited therapies targeting upstream drivers of disease. Adipose tissue has emerged as a central regulator of systemic metabolic homeostasis, where dysfunction contributes to excess free fatty acid flux, chronic inflammation, and hepatic steatosis. In this context, adipose tissue browning—the induction of thermogenically active beige adipocytes within white adipose depots—has gained attention as a potential therapeutic mechanism. Recent advances highlight that adipose browning modulates multiple pathways relevant to MASLD. These include enhanced mitochondrial β-oxidation and energy expenditure, leading to reduced lipid delivery to the liver, as well as endocrine signaling mediated by batokines such as fibroblast growth factor 21 (FGF21), irisin, and neuregulin 4 (Nrg4). Collectively, these pathways influence hepatic lipid metabolism, insulin sensitivity, and inflammatory and fibrotic processes. The preclinical studies consistently demonstrate metabolic and hepatoprotective benefits of browning; however, translational evidence in humans remains limited and heterogeneous. Factors such as reduced thermogenic capacity in obesity, inter-individual variability, and challenges in sustaining browning activation constrain clinical applicability. Overall, adipose tissue browning represents a promising component of a systems-based approach to MASLD. Future work should focus on integrating mechanistic insights with clinical investigation to clarify its therapeutic potential and to identify strategies that enable durable and patient-specific metabolic benefits.
Metabolic dysfunction-associated steatotic liver disease (MASLD) is the most common chronic liver disease worldwide, encompassing a spectrum from simple steatosis to metabolic dysfunction-associated steatohepatitis (MASH), fibrosis, cirrhosis and hepatocellular carcinoma. Increasing evidence indicates that disease prog...
The biological rationale for PPAR modulation in MASLD is delineated, the biological rationale for PPAR modulation in MASLD is critically evaluated, current preclinical and clinical evidence for pan-PPAR agonists is critically evaluated, and emerging strategies for optimizing their development as comprehensive therapeut...
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Population aging is accelerating worldwide, and is accompanied by a growing burden of chronic metabolic diseases. Adipose tissue dysfunction represents a central mechanism linking aging and obesity to metabolic decline, contributing to chronic low-grade inflammation, impaired adipokine signaling, ectopic lipid depositi...
Gabriela Ueta Ortiz, G. Abud, Caroline Fogagnolo et al.· American Journal of Physiolo...· 1 citation
BACKGROUND & AIMS
Metabolic dysfunction-associated steatotic liver disease (MASLD) is a major global health concern, with obesity serving as a primary risk factor. Although Mediator subunit 1 (MED1) plays an important role in lipid metabolism, its specific contribution to obesity-related hepatic steatosis remains uncle...
Xu-Lei Dai, Zi-Yue Wang, Xiang-Zhu Xiao et al.· Metabolism: Clinical and Exp...· 0 citations
Metabolic dysfunction-associated steatotic liver disease (MASLD) is a systemic disorder shaped by interorgan crosstalk: dynamic, bidirectional communication through which the liver and endocrine organs, gut, adipose tissue, brain, kidney, skeletal muscle, bone, and heart exchange signals to coordinate metabolism, immun...
A. Lonardo, Ralf Weiskirchen· Biomedicines· 0 citations
The terminology of fatty liver disease has evolved from non-alcoholic fatty liver disease (NAFLD) to alternative metabolically oriented frameworks, including metabolic dysfunction-associated fatty liver disease (MAFLD) and, more recently, metabolic dysfunction-associated steatotic liver disease (MASLD). Its complex pat...
Wei-Zhou Wang, Yun-Tao Tang, Zi-Qian Wan et al.· Pharmacological Research· 0 citations
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