OM2, a Novel Oligomannuronate-Chromium(III) Complex, Promotes Mitochondrial Biogenesis and Lipid Metabolism in 3T3-L1 Adipocytes via the AMPK-PGC1α Pathway
Jiejie Hao, Cui Hao, Lijuan Zhang, Xin Liu, Xiaolin Zhou, Yunlou Dun, Haihua Li, Guangsheng Li, Xiaoliang Zhao, Yuanyuan An, Jiankang Liu, Guangli Yu

TL;DR
OM2, a new compound from marine alginate, boosts mitochondrial function and lipid metabolism in fat cells via the AMPK-PGC1α pathway, potentially aiding in diabetes treatment.
Contribution
OM2 is a novel oligomannuronate-chromium(III) complex that activates the AMPK-PGC1α pathway to enhance mitochondrial biogenesis and lipid metabolism in adipocytes.
Findings
OM2 activates the AMPK-PGC1α signaling pathway in 3T3-L1 adipocytes.
OM2 increases mitochondrial biogenesis and improves mitochondrial function.
OM2 reduces lipid accumulation through enhanced fatty acid β-oxidation and ATGL expression.
Abstract
In our previous studies, we prepared novel oligomannuronate-chromium(III) complexes (OM2, OM4) from marine alginate, and found that these compounds sensitize insulin action better than oligomannuronate(OM), chromium, and metformin in C2C12 skeletal muscle cells. In the present study, we studied their effects on mitochondrial biogenesis, lipid metabolism, and the underlying molecular mechanisms in differentiated 3T3-L1 adipocytes. We firstly used the pGL3-PGC1α and pGL3-ATGL promoter plasmids to compare their effects on PGC1α and ATGL transcription activities. Then mitochondrial biogenesis was quantified by transmission electron microscopy and MitoTracker staining. Mitochondrial oxygen consumption and fatty acid oxidation were measured by an oxygen biosensor system and ³H-labelled water scintillation. The mitochondrial DNA and mRNA involved in mitochondrial biogenesis and lipid…
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Taxonomy
TopicsAgriculture and Biological Studies · Land Use and Management · Regional Socio-Economic Development Trends
