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Effects of Malate Ringer's solution on myocardial injury in sepsis and enforcement effects of TPP@PAMAM-MR.

敗血症における心筋傷害に対するリンゴ酸リンゲル液の効果とTPP@PAMAM-MRの増強効果 (機械翻訳の邦題)

Journal of translational medicine2022Tan L, She H, Zheng J, et al.
研究デザインその他の原著論文
対象動物

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研究デザイン
その他の原著論文
対象
動物
出版年
2022
出典
doi.org
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表示あり
出版状態
訂正あり
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

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出版状態: 訂正あり

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日本語要約(機械生成)

敗血症後の心筋傷害に対するリンゲル液の効果を検討した。盲腸結紮穿刺(CLP)による敗血症モデルとリポ多糖(LPS)刺激心筋細胞を用い、リンゴ酸リンゲル液(MR)が乳酸リンゲル液(LR)と比較して生存時間を延長し、心機能を改善し、肝・腎・肺の障害を軽減することを示した。プロテオミクス解析により、MRは酸化的リン酸化とアポトーシス関連経路に影響を与え、活性酸素種(ROS)を減少させ、ミトコンドリアの形態と機能を改善し、ATP産生を促進した。また、アポトーシス関連タンパク質の発現を低下させ、抗アポトーシスタンパク質の発現を増加させた。さらに、ミトコンドリア標的ポリマー(TPP@PAMAM@MA)を含有するTPP-MRは、MRより心筋ミトコンドリアへの標的性と心筋保護効果が優れていた。MRは敗血症後の心筋傷害を保護し、その機序はミトコンドリア機能改善とアポトーシス抑制に関連する。

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抄録

Background: Myocardial dysfunction played a vital role in organ damage after sepsis. Fluid resuscitation was the essential treatment in which Lactate Ringer's solution (LR) was commonly used. Since LR easily led to hyperlactatemia, its resuscitation effect was limited. Malate Ringer's solution (MR) was a new resuscitation crystal liquid. Whether MR had a protective effect on myocardial injury in sepsis and the relevant mechanism need to be studied.Methods: The cecal ligation and puncture (CLP) inducing septic model and lipopolysaccharide (LPS) stimulating cardiomyocytes were used, and the cardiac function, the morphology and function of mitochondria were observed. The protective mechanism of MR on myocardial injury was explored by proteomics. Then the effects of TPP@PAMAM-MR, which consisted of the mitochondria- targeting polymer embodied malic acid, was further observed.Results: Compared with LR, MR resuscitation significantly prolonged survival time, improved the cardiac function, alleviated the damages of liver, kidney and lung following sepsis in rats. The proteomics of myocardial tissue showed that differently expressed proteins between MR and LR infusion involved oxidative phosphorylation, apoptosis. Further study found that MR decreased ROS, improved the mitochondrial morphology and function, and ultimately enhanced mitochondrial respiration and promoted ATP production. Moreover, MR infusion decreased the expression of apoptosis-related proteins and increased the expression of anti-apoptotic proteins. TPP@PAMAM@MA was a polymer formed by wrapping L-malic acid with poly amido amine (PAMAM) modified triphenylphosphine material. TPP@PAMAM-MR (TPP-MR), which was synthesized by replacing the L-malic acid of MR with TPP@PAMAM@MA, was more efficient in targeting myocardial mitochondria and was superior to MR in protecting the sepsis-inducing myocardial injury.Conclusion: MR was suitable for protecting myocardial injury after sepsis. The mechanism was related to MR improving the function and morphology of cardiomyocyte mitochondria and inhibiting cardiomyocyte apoptosis. The protective effect of TPP-MR was superior to MR.

MeSH

AminesAnimalsApoptosis Regulatory ProteinsMalatesPolymersRatsRinger's SolutionSepsisShock, Hemorrhagic

DOI 10.1186/s12967-022-03811-y

PMID 36514103

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