Back to Search Start Over

Dermal adipose tissue has high plasticity and undergoes reversible dedifferentiation in mice

Authors :
Zhang, Zhuzhen
Shao, Mengle
Hepler, Chelsea
Zi, Zhenzhen
Zhao, Shangang
An, Yu. A.
Zhu, Yi
Ghaben, Alexandra L.
Wang, May-yun
Li, Na
Onodera, Toshiharu
Joffin, Nolwenn
Crewe, Clair
Zhu, Qingzhang
Vishvanath, Lavanya
Kumar, Ashwani
Xing, Chao
Wang, Qiong A.
Gautron, Laurent
Deng, Yingfeng
Gordillo, Ruth
Kruglikov, Ilja
Kusminski, Christine M.
Gupta, Rana K.
Scherer, Philipp E.
Source :
Journal of Clinical Investigation. December, 2019, Vol. 129 Issue 12, p5327, 16 p.
Publication Year :
2019

Abstract

Dermal adipose tissue (also known as dermal white adipose tissue and herein referred to as dWAT) has been the focus of much discussion in recent years. However, dWAT remains poorly characterized. The fate of the mature dermal adipocytes and the origin of the rapidly reappearing dermal adipocytes at different stages remain unclear. Here, we isolated dermal adipocytes and characterized dermal fat at the cellular and molecular level. Together with dWAT's dynamic responses to external stimuli, we established that dermal adipocytes are a distinct class of white adipocytes with high plasticity. By combining pulse-chase lineage tracing and single-cell RNA sequencing, we observed that mature dermal adipocytes undergo dedifferentiation and redifferentiation under physiological and pathophysiological conditions. Upon various challenges, the dedifferentiated cells proliferate and redifferentiate into adipocytes. In addition, manipulation of dWAT highlighted an important role for mature dermal adipocytes for hair cycling and wound healing. Altogether, these observations unravel a surprising plasticity of dermal adipocytes and provide an explanation for the dynamic changes in dWAT mass that occur under physiological and pathophysiological conditions, and highlight the important contributions of dWAT toward maintaining skin homeostasis.<br />Introduction White adipose tissue (WAT) evolved as the principal site for energy storage in vertebrate animals. White adipocytes, or 'fat cells,' are characterized by the presence of a single large [...]

Details

Language :
English
ISSN :
00219738
Volume :
129
Issue :
12
Database :
Gale General OneFile
Journal :
Journal of Clinical Investigation
Publication Type :
Academic Journal
Accession number :
edsgcl.610675186
Full Text :
https://doi.org/10.1172/JCI130239