脂肪生成
间皮细胞
分泌物
间质细胞
间皮
人口
细胞生物学
大网膜
生物
癌症研究
内科学
内分泌学
医学
化学
病理
间充质干细胞
解剖
环境卫生
作者
Radiana Ferrero,Pernille Yde Rainer,Marie Rumpler,Julie Russeil,Magda Zachara,Joern Pezoldt,Guido van Mierlo,Vincent Gardeux,Wouter Saelens,Daniel Alpern,Lucie Favre,Nathalie Vionnet,Styliani Mantziari,Tobias Zingg,Nelly Pitteloud,Michel Suter,Maurice Matter,Kai-Uwe Schlaudraff,Carles Cantó,Bart Deplancke
标识
DOI:10.1016/j.cmet.2024.04.017
摘要
Adipose tissue plasticity is orchestrated by molecularly and functionally diverse cells within the stromal vascular fraction (SVF). Although several mouse and human adipose SVF cellular subpopulations have by now been identified, we still lack an understanding of the cellular and functional variability of adipose stem and progenitor cell (ASPC) populations across human fat depots. To address this, we performed single-cell and bulk RNA sequencing (RNA-seq) analyses of >30 SVF/Lin− samples across four human adipose depots, revealing two ubiquitous human ASPC (hASPC) subpopulations with distinct proliferative and adipogenic properties but also depot- and BMI-dependent proportions. Furthermore, we identified an omental-specific, high IGFBP2-expressing stromal population that transitions between mesothelial and mesenchymal cell states and inhibits hASPC adipogenesis through IGFBP2 secretion. Our analyses highlight the molecular and cellular uniqueness of different adipose niches, while our discovery of an anti-adipogenic IGFBP2+ omental-specific population provides a new rationale for the biomedically relevant, limited adipogenic capacity of omental hASPCs.
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