Evaluating metabolic changes in H9c2 cardiomyoblasts exposed to LPS: Towards understanding sepsis mechanisms.

IF 2.6 3区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES
PLoS ONE Pub Date : 2025-10-09 eCollection Date: 2025-01-01 DOI:10.1371/journal.pone.0334234
Amandine Szczesnowski, Karine Pichavant-Rafini, Marie-Dominique Jezequel, Michaël Théron, Karelle Léon
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引用次数: 0

Abstract

Sepsis is a major public health concern associated with high mortality rates, particularly due to sepsis-induced myocardial dysfunction (SIMD), which affects about 50% of septic patients. This study investigates how mitochondrial dysfunction contributes to SIMD by examining metabolic changes in H9c2 cardiomyoblasts exposed to varying concentrations of lipopolysaccharide (LPS), a bacterial endotoxin, to enhance our understanding of the relationship between infection severity and metabolic responses. H9c2 cells were treated with LPS at concentrations of 0.5, 1, 2.5, and 5 µg/mL for 24 or 48 hours. Cell viability was measured using the MTT assay, and gene expression related to inflammation and mitochondrial function was analyzed through Real-Time PCR. Mitochondrial respiration and energy metabolism were assessed using the Seahorse MitoStress kit. Results showed that while 2.5 and 5 µg/mL of LPS for 24 hours did not significantly impact cell viability, exposure to 5 µg/mL for 48 hours led to a 77.7% decrease in survival. Gene analysis indicated significant overexpression of IL-6 and SOD2, with consistent underexpression of mt-ND1. Mitochondrial respiration increased at lower LPS concentrations but decreased at 5 µg/mL. Glycolytic metabolism also increased at lower LPS levels but decreased at higher concentrations. Inhibition of metabolic pathways affected mitochondrial function, especially at higher LPS concentrations. Our findings suggest that LPS induces metabolic disturbances in H9c2 cells, with adaptive responses at lower concentrations. However, excessive exposure results in mitochondrial and cellular damage, decreasing overall metabolism.

评估暴露于LPS的H9c2心肌细胞的代谢变化:了解脓毒症机制。
脓毒症是与高死亡率相关的主要公共卫生问题,特别是脓毒症引起的心肌功能障碍(SIMD),约50%的脓毒症患者受其影响。本研究通过检测暴露于不同浓度脂多糖(一种细菌内毒素)的H9c2心肌细胞的代谢变化,探讨线粒体功能障碍如何促进SIMD,以增强我们对感染严重程度和代谢反应之间关系的理解。H9c2细胞分别用浓度为0.5、1、2.5和5µg/mL的LPS处理24或48小时。MTT法测定细胞活力,Real-Time PCR法分析炎症和线粒体功能相关基因表达。使用Seahorse MitoStress试剂盒评估线粒体呼吸和能量代谢。结果显示,虽然2.5和5µg/mL LPS处理24小时对细胞活力没有显著影响,但5µg/mL LPS处理48小时导致细胞存活率下降77.7%。基因分析显示IL-6和SOD2显著过表达,mt-ND1一致过表达。低脂多糖浓度下线粒体呼吸增加,5µg/mL时线粒体呼吸减少。糖酵解代谢也在低脂多糖水平下增加,但在高脂多糖浓度下降低。代谢途径的抑制影响线粒体功能,特别是在较高的LPS浓度下。我们的研究结果表明,LPS诱导H9c2细胞代谢紊乱,并在较低浓度下产生适应性反应。然而,过量暴露会导致线粒体和细胞损伤,降低整体代谢。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
PLoS ONE
PLoS ONE 生物-生物学
CiteScore
6.20
自引率
5.40%
发文量
14242
审稿时长
3.7 months
期刊介绍: PLOS ONE is an international, peer-reviewed, open-access, online publication. PLOS ONE welcomes reports on primary research from any scientific discipline. It provides: * Open-access—freely accessible online, authors retain copyright * Fast publication times * Peer review by expert, practicing researchers * Post-publication tools to indicate quality and impact * Community-based dialogue on articles * Worldwide media coverage
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