Life sciences · Journal article
Obesity Reviews · September 21, 2026
No summary has been generated for this record yet. What follows is drawn from its source metadata only.
Journal article.
No findings were extractable from the material analysed.
Safety was not reported in the material analysed. Check the source before drawing any conclusion about harm.
The source did not state who this applies to in practice.
Graded across the dimensions that decide whether you should act, each from what the source actually supports. There is no single score, and where a dimension was not assessed it says so.
This record has not been graded across any dimension yet. Treat the label above as provisional and read the source.
What is missing. This record has no bottom line, key findings, reported figures, evidence dimensions. That is a gap in the analysis, not a judgement about the study.
ABSTRACT The global rise in obesity has intensified scientific interest in adipose tissue biology, particularly the mechanisms underlying white adipose tissue (WAT) browning. This bibliometric study mapped the evolution, structure, and emerging directions of research on obesity, overweight, and WAT browning from 2011 to May 2025. Records were retrieved from Web of Science, Scopus, and PubMed and analyzed using VOSviewer, Bibliometrix, and Biblioshiny. A total of 2106 publications were identified, with a notable surge in output over the last decade. The United States, China, and several European countries emerged as leading contributors in terms of publication volume and citations. Influential journals were identified, highlighting interdisciplinary collaboration across molecular biology, endocrinology, and metabolic research. Keyword co‐occurrence and trend‐topic analyses identified thermogenesis, mitochondrial activity, transcriptional regulation, and adipocyte differentiation as central themes, whereas more recent research has shifted toward omics‐based approaches, autophagy, gut microbiota, extracellular vesicles, immune regulation, and neuroendocrine pathways. Despite major mechanistic advances, the literature remains predominantly preclinical, and the contribution of beige adipocytes to whole‐body energy expenditure in humans appears modest. Overall, the field has evolved from the identification of thermogenic adipocytes toward a more integrated view of adipose tissue plasticity and interorgan communication, although substantial challenges remain for clinical translation and long‐term validation.