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We used the resolving power of single-cell transcriptional profiling to molecularly characterize the mouse adipose stem and progenitor cell-enriched, subcutaneous adipose stromal vascular fraction. We molecularly assessed CD45- CD31- SVF cells using the 10x Genomics Chromium (10x) platform.
ORGANISM(S): Mus musculus 
Changes of gene expression in primary cell cultures of salmon adipose-derived stromal-vascular fraction were studied at six time-points that covered the key differentiation events: confluence, clonal expansion, determination and establishment of the mature adipocyte phenotype. Time-course experiment...
ORGANISM(S): Salmo salar 
We used single-cell RNA-seq to characterize the heterogeneity of the human Lin- stromal vascular fraction across five adipose depots. We mollecularly assessed Lin- SVF cells from subcutaneous, omentum, mesocolic, and perirenal fat depots, as well as gallbladder-associated fat using 10x Genomics.
ORGANISM(S): Homo sapiens 
Mesenchymal stromal cells (MSCs) are cultured cells that can give rise to mature mesenchymal cells under appropriate conditions, and secrete a number of biologically relevant molecules that may play an important role in regenerative medicine. Evidence indicates that pericytes (PCs) correspond to mes...
ORGANISM(S): Homo sapiens 
Microarray analysis of the gene expression profile of SSEA-3-positive human adipose-derived MSCs were performed. Liposuction aspirates were obtained from the abdomen and thighs. Stromal vascular fraction (SVF) was isolated from the aspirated fat. Muse cells that express human SSEA-3 were collected f...
ORGANISM(S): Homo sapiens 
To identify candidates of interest that were more highly expressed in BAT than WAT, we conducted RNAseq in human primary brown and white adipocytes. Adipose tissue was obtained from the central compartment of the neck, superior to the clavicle and deep to the lateral thyroid lobe either adjacent to ...
ORGANISM(S): Homo sapiens 
Characterization of the stromal vascular fraction (SVF) of human subcutaneous adipose tissue (SAT)
Single-cell RNA-seq of the human Lineage– cells derived from the adipose stromal vascular fraction across depots
We report single-cell RNA-seq (Drop-seq) data from the stromal vascular fraction (SVF) of human subcutaneous adipose tissue (SAT).
ORGANISM(S): Homo sapiens 
2022-01-11 | GSE176067 | GEO
Single Cell RNASeq profiling of stromal vascular fraction from Subcutaneous and visceral adipose tissue
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