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单侧输尿管梗阻诱导的梗阻性肾病纤维化中,线粒体功能障碍和内质网应激的促进作用。

Mitochondrial dysfunction and endoplasmic reticulum stress in the promotion of fibrosis in obstructive nephropathy induced by unilateral ureteral obstruction.

机构信息

Facultad de Química, Departamento de Biología, Universidad Nacional Autónoma de México, Mexico, Mexico.

出版信息

Biofactors. 2020 Sep;46(5):716-733. doi: 10.1002/biof.1673. Epub 2020 Sep 9.

Abstract

Obstructive nephropathy favors the progression to chronic kidney disease (CKD), a severe health problem worldwide. The unilateral ureteral obstruction (UUO) model is used to study the development of fibrosis. Impairment of renal mitochondria plays a crucial role in several types of CKD and has been strongly related to fibrosis onset. Nevertheless, in the UUO model, the impairment of mitochondria, their relationship with endoplasmic reticulum (ER) stress induction and the participation of both to induce the fibrotic process remain unclear. In this review, we summarize the current information about mitochondrial bioenergetics, redox dynamics, mitochondrial mass, and biogenesis alterations, as well as the relationship of these mitochondrial alterations with ER stress and their participation in fibrotic processes in UUO models. Early after obstruction, there is metabolic reprogramming related to mitochondrial fatty acid β-oxidation impairment, triggering lipid deposition, oxidative stress, (calcium) Ca dysregulation, and a reduction in mitochondrial mass and biogenesis. Mitochondria and the ER establish a pathological feedback loop that promotes the impairment of both organelles by ER stress pathways and Ca levels dysregulation. Preserving mitochondrial and ER function can prevent or at least delay the fibrotic process and loss of renal function. However, deeper understanding is still necessary for future clinically-useful therapies.

摘要

梗阻性肾病有利于慢性肾脏病 (CKD) 的进展,这是一个全球性的严重健康问题。单侧输尿管梗阻 (UUO) 模型用于研究纤维化的发展。肾脏线粒体的损伤在几种类型的 CKD 中起着至关重要的作用,并且与纤维化的发生有很强的相关性。然而,在 UUO 模型中,线粒体的损伤、它们与内质网 (ER) 应激诱导的关系以及两者参与诱导纤维化过程仍不清楚。在这篇综述中,我们总结了目前关于线粒体生物能学、氧化还原动力学、线粒体质量和生物发生改变的信息,以及这些线粒体改变与 ER 应激的关系及其在 UUO 模型中纤维化过程中的参与。在梗阻后早期,存在与线粒体脂肪酸 β-氧化损伤相关的代谢重编程,触发脂质沉积、氧化应激、(钙)Ca 失调以及线粒体质量和生物发生减少。线粒体和 ER 建立了一个病理性反馈回路,通过 ER 应激途径和 Ca 水平失调促进这两个细胞器的损伤。维持线粒体和 ER 的功能可以预防或至少延迟纤维化过程和肾功能的丧失。然而,为了未来的临床应用治疗,仍需要更深入的了解。

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