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Targeting mitochondria: a novel approach for treating platinum-resistant ovarian cancer

卵巢癌 线粒体 医学 癌症研究 生物信息学 肿瘤科 内科学 癌症 生物 细胞生物学
作者
Xin Cui,Juan Xu,Xuemei Jia
出处
期刊:Journal of Translational Medicine [BioMed Central]
卷期号:22 (1) 被引量:4
标识
DOI:10.1186/s12967-024-05770-y
摘要

Ovarian cancer is a prevalent gynecologic malignancy with the second-highest mortality rate among gynecologic malignancies. Platinum-based chemotherapy is the first-line treatment for ovarian cancer; however, a majority of patients with ovarian cancer experience relapse and develop platinum resistance following initial treatment. Despite extensive research on the mechanisms of platinum resistance at the nuclear level, the issue of platinum resistance in ovarian cancer remains largely unresolved. It is noteworthy that mitochondrial DNA (mtDNA) exhibits higher affinity for platinum compared to nuclear DNA (nDNA). Mutations in mtDNA can modulate tumor chemosensitivity through various mechanisms, including DNA damage responses, shifts in energy metabolism, maintenance of Reactive Oxygen Species (ROS) homeostasis, and alterations in mitochondrial dynamics. Concurrently, retrograde signals produced by mtDNA mutations and their subsequent cascades establish communication with the nucleus, leading to the reorganization of the nuclear transcriptome and governing the transcription of genes and signaling pathways associated with chemoresistance. Furthermore, mitochondrial translocation among cells emerges as a crucial factor influencing the effectiveness of chemotherapy in ovarian cancer. This review aims to explore the role and mechanism of mitochondria in platinum resistance, with a specific focus on mtDNA mutations and the resulting metabolic reprogramming, ROS regulation, changes in mitochondrial dynamics, mitochondria-nucleus communication, and mitochondrial transfer. Directly targeting mitochondria is one of the main mechanisms by which platinum induces apoptosis in tumor cells. mtDNA mutations occur frequently in ovarian cancer and significantly contribute to platinum resistance. The metabolic heterogeneity induced by mtDNA mutations can directly drive platinum resistance in ovarian cancer cells. Targeting mitochondria could be a novel approach for platinum-resistant ovarian cancer.

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