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Lipid Profiling Reveals Browning Heterogeneity of White Adipose Tissue by Β3-Adrenergic Stimulation.

Citation
He, P., et al. “Lipid Profiling Reveals Browning Heterogeneity Of White Adipose Tissue By Β3-Adrenergic Stimulation.”. Biomolecules.
Center University of Chicago
Author Ping He, Biyu Hou, Yanliang Li, Chunyang Xu, Peng Ma, Sin Man Lam, Victoria Gil, Xinyu Yang, Xiuying Yang, Li Zhang, Guanghou Shui, Junke Song, Guifen Qiang, Chong Wee Liew, Guanhua Du
Keywords browning heterogeneity, lipid profiling, subcutaneous adipose tissue, visceral adipose tissue, white adipose tissue
Abstract

BACKGROUND: White adipose tissue (WAT) browning confers beneficial effects on metabolic diseases. However, visceral adipose tissue (VAT) is not as susceptible to browning as subcutaneous adipose tissue (SAT).

AIM: Interpreting the heterogeneity of VAT and SAT in brown remodeling and provide promising lipid targets to promote WAT browning.

METHODS: We first investigated the effects of β3-adrenergic stimulation by CL316,243 on systemic metabolism. Then, high-coverage targeted lipidomics approach with multiple reaction monitoring (MRM) was utilized to provide extensive detection of lipid metabolites in VAT and SAT.

RESULTS: CL316,243 notably ameliorated the systemic metabolism and induced brown remodeling of SAT but browning resistance of VAT. Comprehensive lipidomics analysis revealed browning heterogeneity of VAT and SAT with more dramatic alteration of lipid classes and species in VAT rather than SAT, though VAT is resistant to browning. Adrenergic stimulation differentially affected glycerides content in VAT and SAT and boosted the abundance of more glycerophospholipids species in VAT than in SAT. Besides, CL316,243 increased sphingolipids in VAT without changes in SAT, meanwhile, elevated cardiolipin species more prominently in VAT than in SAT.

CONCLUSIONS: We demonstrated the browning heterogeneity of WAT and identified potential lipid biomarkers which may provide lipid targets for overcoming VAT browning resistance.

Year of Publication
2019
Journal
Biomolecules
Volume
9
Issue
9
Date Published
12/2019
ISSN Number
2218-273X
DOI
10.3390/biom9090444
Alternate Journal
Biomolecules
PMID
31484405
PMCID
PMC6770315
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