| Literature DB >> 32066997 |
Jinchu Vijay1,2, Marie-Frédérique Gauthier3, Rebecca L Biswell4, Daniel A Louiselle4, Jeffrey J Johnston4, Warren A Cheung4, Bradley Belden4, Albena Pramatarova2, Laurent Biertho3, Margaret Gibson4, Marie-Michelle Simon2, Haig Djambazian2, Alfredo Staffa2, Guillaume Bourque1,2, Anita Laitinen5, Johanna Nystedt5, Marie-Claude Vohl6, Jason D Fraser7, Tomi Pastinen4, André Tchernof8, Elin Grundberg9.
Abstract
The complex relationship between metabolic disease risk and body fat distribution in humans involves cellular characteristics which are specific to body fat compartments. Here we show depot-specific differences in the stromal vascual fraction of visceral and subcutaneous adipose tissue by performing single-cell RNA sequencing of tissue specimen from obese individuals. We characterize multiple immune cells, endothelial cells, fibroblasts, adipose and hematopoietic stem cell progenitors. Subpopulations of adipose-resident immune cells are metabolically active and associated with metabolic disease status and those include a population of potential dysfunctional CD8+ T cells expressing metallothioneins. We identify multiple types of adipocyte progenitors that are common across depots, including a subtype enriched in individuals with type 2 diabetes. Depot-specific analysis reveals a class of adipocyte progenitors unique to visceral adipose tissue, which shares common features with beige preadipocytes. Our human single-cell transcriptome atlas across fat depots provides a resource to dissect functional genomics of metabolic disease.Entities:
Mesh:
Year: 2019 PMID: 32066997 PMCID: PMC7025882 DOI: 10.1038/s42255-019-0152-6
Source DB: PubMed Journal: Nat Metab ISSN: 2522-5812