エイコサペンタエン酸の抗脂肪形成作用に関する機序検討:PPARs およびcAMP シグナル伝達経路に着目して

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Title ( jpn )
エイコサペンタエン酸の抗脂肪形成作用に関する機序検討:PPARs およびcAMP シグナル伝達経路に着目して
Title ( eng )
Mechanistic Insights into the Anti-Adipogenic Effects of Eicosapentaenoic Acid: Focus on PPARs and the cAMP Signaling Pathway
Title Transcription
エイコサペンタエンサン ノ コウ シボウ ケイセイ サヨウ ニカンスル キジョ ケントウ : PPARs オヨビ cAMP シグナル デンタツ ケイロ ニ チャクモクシテ
Creator
KAWAMOTO Moka
HIGA Manami
NAITO Kazuma
Source Title
島根大学生物資源科学部研究報告
Bulletin of the Faculty of Life and Environmental Science Shimane University
Volume 30
Start Page 1
End Page 7
Journal Identifire
ISSN 2435-0885
Descriptions
Abstract
The prevalence of obesity and type 2 diabetes in Japan is rising, largely due to the westernization of dietary habits. Controlling adipogenesis is a key strategy for prevention. Eicosapentaenoic acid (EPA), an n-3 polyunsaturated fatty acid, is known to exert anti-adipogenic effects; however, its detailed molecular mechanism during the critical “differentiation induction phase” remains unclear. This study aimed to elucidate how EPA suppresses adipogenesis in 3T3- L1 cells, with a focus on the cAMP signaling pathway. Cells were treated with EPA (50 μM) exclusively during the 48- hour differentiation induction phase. Lipid accumulation was evaluated by Oil Red O staining, and signaling pathways were analyzed using specific antagonists and Western blotting. EPA treatment markedly reduced lipid accumulation. Since antagonists of PPARα and PPARγ also inhibited adipogenesis, EPA is unlikely to exert its effects through activation of these receptors. Mechanistically, EPA decreased PKA phosphorylation, suggesting reduced intracellular cAMP levels. This key finding of cAMP depletion implies a concurrent shutdown of cAMP‑dependent pathways, including Epac, which is essential for differentiation. We propose that EPA exerts its anti-adipogenic effect primarily by suppressing cAMP production via a Gαi-protein-coupled receptor mechanism, thereby inhibiting the initiation of adipogenesis. Keywords: Adipogenesis, cAMP, Eicosapentaenoic acid, Gαi-coupled receptor, Signal transduction
Language
jpn
Resource Type departmental bulletin paper
Publisher
島根大学生物資源科学部
Faculty of Life and Environmental Science, Shimane University
Date of Issued 2026-01-31
Publish Type Version of Record
Access Rights open access
Relation
[NCID] AA1112906X
Remark CODEN : SDSKF6