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Protection of procyanidin B2 on mitochondrial dynamics in sepsis associated acute kidney injury via promoting Nrf2 nuclear translocation

机译:通过促进NRF2核易位对败血症相关急性肾损伤的脓毒症癌症动力学的保护

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摘要

In septic acute kidney injury (SAKI), the positive feedback between damaged mitochondria and accumulation of reactive oxygen species results in cell and tissue damage through multiple mechanisms. Removing the damaged mitochondria or neutralizing the reactive oxygen species has been considered beneficial to alleviating cell damage. The antioxidant Procyanidin B2 has been reported to inhibits reactive oxygen species and thereby reduces cell injury. However, it is unclear whether this effect is associated with clearance of damaged mitochondria. Here, we evaluated the efficacy of procyanidin B2 on SAKI, and focused on its effects on mitochondrial dynamics and removing damaged mitochondria via mitophagy. The results showed that the renal function, renal tubular cell vacuolization and oxidative stress were decreased in SAKI mice treated with procyanidin B2, moreover, skewed mitochondrial fusion/fission, mitochondrial mediated apoptosis and impaired mitophagy were improved in SAKI mice treated with procyanidin B2. In mechanism, the improvement of procyanidin B2 on mitochondrial dynamics were associated with increased nuclear translocation of the transcription factor, Nrf2. In summary, our findings highlighted that the protective efficacy of procyanidin B2 in reducing cellular damage in SAKI, and mechanisms improving mitochondrial dynamics and quality control at least in part by promoting Nrf2 translocation into the nucleus.
机译:在脓毒性急性肾损伤(Saki)中,受损线粒体的阳性反馈和反应性氧物种的积累导致细胞和组织通过多种机制损伤。除去受损的线粒体或中和反应性氧物质已被认为有利于缓解细胞损伤。据报道,抗氧化剂原霉素B2抑制反应性氧物质,从而降低细胞损伤。然而,目前尚不清楚这种效果是否与受损线粒体的间隙相关。在这里,我们评估了Procyanidin B2对Saki的疗效,并专注于其对线粒体动力学的影响,并通过MITOCHY去除受损的线粒体。结果表明,用原硝酸丁蛋白B2处理的Saki小鼠中肾功能,肾小管空泡液化和氧化应激降低,偏见的线粒体融合/裂变,线粒体介导的细胞凋亡和损伤的乳化物在用ProCyanidin B2处理的Saki小鼠中得到改善。在机制中,对线粒体动力学的原酸毒肽B2的改善与转录因子的核转位增加有关,NRF2有关。总之,我们的研究结果强调,Procyanidin B2在降低Saki细胞损伤方面的保护效果,以及至少部分地通过促进NRF2易位进入细胞核来改善线粒体动力学和质量控制的机制。

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