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Updated: Apr 1, 2026

Differentiation and Imaging of Brown Adipocytes from the Stromal Vascular Fraction of Interscapular Adipose Tissue from Newborn Mice
Published on: February 3, 2023
Characterization of a primary brown adipocyte culture system derived from human fetal interscapular fat
Sarah E Seiler1, Dan Xu2, Jia-Pei Ho2
1Zen-Bio; Inc.; Research Triangle Park NC, USA.
Abstract:
Brown fat has gained widespread attention as a potential therapeutic target to treat obesity and associated metabolic disorders. Indeed, the anti-obesity potential of multiple targets to stimulate both brown adipocyte differentiation and recruitment have been verified in rodent models. However, their therapeutic potential in humans is unknown due to the lack of a human primary brown adipocyte cell culture system. Likewise, the lack of a well-characterized human model has limited the discovery of novel targets for the activation of human brown fat. To address this current need, we aimed to identify and describe the first primary brown adipocyte cell culture system from human fetal interscapular brown adipose tissue. Pre-adipocytes isolated from non-viable human fetal interscapular tissue were expanded and cryopreserved. Cells were then thawed and plated alongside adult human subcutaneous and omental pre-adipocytes for subsequent differentiation and phenotypic characterization. Interscapular pre-adipocytes in cell culture differentiated into mature adipocytes that were morphologically indistinguishable from the adult white depots. Throughout differentiation, cultured human fetal interscapular adipocytes demonstrated increased expression of classical brown fat markers compared to subcutaneous and omental cells. Further, functional analysis revealed an elevation in fatty acid oxidation as well as maximal and uncoupled oxygen consumption in interscapular brown adipocytes compared to white control cells. These data collectively identify the brown phenotype of these cells. Thus, our primary cell culture system derived from non-viable human fetal interscapular brown adipose tissue provides a valuable tool for the study of human brown adipocyte biology and for the development of anti-obesity therapeutics.
Insights
Researchers developed a primary cell culture system from human fetal brown fat. This system aids in studying brown adipocyte biology and developing new obesity treatments.
Area of Science:
- Cell Biology
- Metabolic Disorders
- Obesity Research
Background:
- Brown fat is a therapeutic target for obesity and metabolic disorders.
- Rodent models show potential for stimulating brown fat, but human data is lacking.
- A human primary brown adipocyte cell culture system is needed to study human brown fat activation and discover novel targets.
Purpose of the Study:
- To establish and characterize the first primary cell culture system from human fetal interscapular brown adipose tissue.
- To provide a valuable tool for studying human brown adipocyte biology.
- To facilitate the development of anti-obesity therapeutics.
Main Methods:
- Isolation and expansion of pre-adipocytes from human fetal interscapular brown adipose tissue.
- Cryopreservation and subsequent thawing and plating of cells.
- Differentiation and phenotypic characterization compared to adult human white adipocytes.
Main Results:
- Human fetal interscapular pre-adipocytes differentiated into mature adipocytes.
- Cultured cells showed increased expression of brown fat markers compared to white adipocytes.
- Functional analyses revealed elevated fatty acid oxidation and oxygen consumption, confirming the brown phenotype.
Conclusions:
- A novel primary cell culture system from human fetal brown adipose tissue has been established.
- This system provides a valuable tool for investigating human brown adipocyte biology.
- The system supports the development of novel anti-obesity therapeutics targeting human brown fat.

