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线粒体:克服癌症化疗耐药性的关键特征解析。

Mitochondria: Insights into Crucial Features to Overcome Cancer Chemoresistance.

机构信息

Department of Medical Sciences, Section of Experimental Medicine, University of Ferrara, 44121 Ferrara, Italy.

Department of Neuroscience and Rehabilitation, Section of Biochemistry, Molecular Biology and Genetics, University of Ferrara, 44121 Ferrara, Italy.

出版信息

Int J Mol Sci. 2021 Apr 30;22(9):4770. doi: 10.3390/ijms22094770.

Abstract

Mitochondria are key regulators of cell survival and are involved in a plethora of mechanisms, such as metabolism, Ca signaling, reactive oxygen species (ROS) production, mitophagy and mitochondrial transfer, fusion, and fission (known as mitochondrial dynamics). The tuning of these processes in pathophysiological conditions is fundamental to the balance between cell death and survival. Indeed, ROS overproduction and mitochondrial Ca overload are linked to the induction of apoptosis, while the impairment of mitochondrial dynamics and metabolism can have a double-faceted role in the decision between cell survival and death. Tumorigenesis involves an intricate series of cellular impairments not yet completely clarified, and a further level of complexity is added by the onset of apoptosis resistance mechanisms in cancer cells. In the majority of cases, cancer relapse or lack of responsiveness is related to the emergence of chemoresistance, which may be due to the cooperation of several cellular protection mechanisms, often mitochondria-related. With this review, we aim to critically report the current evidence on the relationship between mitochondria and cancer chemoresistance with a particular focus on the involvement of mitochondrial dynamics, mitochondrial Ca signaling, oxidative stress, and metabolism to possibly identify new approaches or targets for overcoming cancer resistance.

摘要

线粒体是细胞存活的关键调节因子,参与多种机制,如代谢、Ca 信号转导、活性氧(ROS)产生、线粒体自噬和线粒体转移、融合和裂变(称为线粒体动力学)。在病理生理条件下,这些过程的调节对于细胞死亡和存活之间的平衡至关重要。事实上,ROS 过度产生和线粒体 Ca 超载与细胞凋亡的诱导有关,而线粒体动力学和代谢的损害可能在细胞存活和死亡之间的决策中具有双重作用。肿瘤发生涉及一系列尚未完全阐明的复杂细胞损伤,而癌症细胞中凋亡抵抗机制的出现增加了进一步的复杂性。在大多数情况下,癌症复发或缺乏反应性与化疗耐药性的出现有关,这可能是由于几种细胞保护机制的合作,通常与线粒体有关。通过这篇综述,我们旨在批判性地报告关于线粒体与癌症化疗耐药性之间关系的最新证据,特别关注线粒体动力学、线粒体 Ca 信号转导、氧化应激和代谢的参与,以可能确定克服癌症耐药性的新方法或靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ed20/8124268/dfa2535be7f8/ijms-22-04770-g001.jpg

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