Empagliflozin ameliorates diabetic cardiomyopathy via regulated branched-chain amino acid metabolism and mTOR/p-ULK1 signaling pathway-mediated autophagy.
エンパグリフロジンは分岐鎖アミノ酸代謝調節とmTOR/p-ULK1シグナル経路を介したオートファジーにより糖尿病性心筋症を改善する (機械翻訳の邦題)
記録の確認項目
- 研究デザイン
- その他の原著論文
- 対象
- 未確定
- 出版年
- 2023
- 出典
- doi.org
- 抄録の表示
- 表示あり
- 出版状態
- 有効な記録
- 状態確認日
- 2026/08/17
- 収集日
- 2026/08/03
- 鮮度
- 確認期限内
- 確認段階
- 自動処理
- 記録状態
- 公開
日本語要約(機械生成)
本研究は、SGLT2阻害薬エンパグリフロジンが糖尿病性心筋症に及ぼす影響とその機序を検討した。糖尿病モデルマウス(KK Cg-Ay/J)にエンパグリフロジンを16週間投与し、心機能、組織学的変化、プロテオミクス解析を行った。その結果、エンパグリフロジンは心室拡張と駆出率低下を改善し、心筋障害マーカー(hs-cTnT、NT-proBNP)の上昇を抑制した。また、炎症細胞浸潤、石灰化沈着、線維化を軽減した。プロテオミクス解析では、エンパグリフロジンはPP2Cmを上方制御し分岐鎖アミノ酸(BCAA)代謝を促進した。さらに、BCAA濃度低下によりmTOR/p-ULK1経路が抑制され、ULK1が増加し、オートファジー基質p62とLC3Bが減少したことから、オートファジー活性が回復した。以上より、エンパグリフロジンはBCAA異化を促進しmTOR/p-ULK1を阻害してオートファジーを亢進することで、糖尿病性心筋症の心筋障害を軽減する可能性が示唆された。
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抄録
Background: Empagliflozin, a sodium-glucose co-transporter 2 inhibitor (SGLT2i), has been reported to significantly reduce the risk of heart failure in multiple clinical studies. However, the underlying mechanisms remain elusive. This study aimed to investigate the effect of empagliflozin on branched-chain amino acid (BCAA) metabolism in diabetic cardiomyopathy.Methods: Thirty male 8-week KK Cg-Ay/J mice were used to study diabetic cardiomyopathy; here, 15 were used as the model group, and the remaining 15 were administered empagliflozin (3.75 mg/kg/day) by gavage daily for 16 weeks. The control group consisted of fifteen male 8-week C57BL/6J mice, whose blood glucose and body weight were measured simultaneously with the diabetic mice until 16 weeks without additional intervention. Echocardiography and histopathology were performed to evaluate cardiac structure and function. Proteomic sequencing and biogenic analysis were performed on mouse hearts. Parallel Reaction Monitoring and western blotting were performed to validate the expression levels of differentially expressed proteins.Results: The results showed that empagliflozin improved ventricular dilatation and ejection fraction reduction in diabetic hearts, as well as the elevation of myocardial injury biomarkers hs-cTnT and NT-proBNP. At the same time, empagliflozin alleviates myocardial inflammatory infiltration, calcification foci deposition, and fibrosis caused by diabetes. The results of the proteomics assay showed that empagliflozin could improve the metabolism of various substances, especially promoting the BCAA metabolism of diabetic hearts by up-regulating PP2Cm. Furthermore, empagliflozin could affect the mTOR/p-ULK1 signaling pathway by reducing the concentration of BCAA in diabetic hearts. When mTOR/p-ULK1 protein was inhibited, ULK1, the autophagy initiation molecule, increased. Moreover, autophagy substrate p62 and autophagy marker LC3B were significantly reduced, indicating that the autophagy activity of diabetes inhibition was reactivated.Conclusions: Empagliflozin may attenuate diabetic cardiomyopathy-related myocardial injury by promoting the catabolism of BCAA and inhibiting mTOR/p-ULK1 to enhance autophagy. These findings suggest that empagliflozin could be a potential candidate drug against BCAA increase and could be used for other cardiovascular diseases with a metabolic disorder of BCAA.
DOI 10.1186/s13098-023-01061-6
PMID 37149696
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