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线粒体在顺铂耐药中的作用。

Mitochondrial Involvement in Cisplatin Resistance.

机构信息

Department of Pharmaceutical and Pharmacological Sciences, University of Padova, Largo Egidio Meneghetti 2, 35131 Padua, Italy.

Venetian Institute of Molecular Medicine (VIMM), Via Orus 2, 35129 Padua, Italy.

出版信息

Int J Mol Sci. 2019 Jul 10;20(14):3384. doi: 10.3390/ijms20143384.

Abstract

Cisplatin is one of the worldwide anticancer drugs and, despite its toxicity and frequent recurrence of resistance phenomena, it still remains the only therapeutic option for several tumors. Circumventing cisplatin resistance remains, therefore, a major goal for clinical therapy and represents a challenge for scientific research. Recent studies have brought to light the fundamental role of mitochondria in onset, progression, and metastasis of cancer, as well as its importance in the resistance to chemotherapy. The aim of this review is to give an overview of the current knowledge about the implication of mitochondria in cisplatin resistance and on the recent development in this research field. Recent studies have highlighted the role of mitochondrial DNA alterations in onset of resistance phenomena, being related both to redox balance alterations and to signal crosstalk with the nucleus, allowing a rewiring of cell metabolism. Moreover, an important role of the mitochondrial dynamics in the adaptation mechanism of cancer cells to challenging environment has been revealed. Giving bioenergetic plasticity to tumor cells, mitochondria allow cells to evade death pathways in stressful conditions, including chemotherapy. So far, even if the central role of mitochondria is recognized, little is known about the specific mechanisms implicated in the resistance. Nevertheless, mitochondria appear to be promising pharmacological targets for overcoming cisplatin resistance, but further studies are necessary.

摘要

顺铂是一种全球范围内的抗癌药物,尽管其具有毒性且经常出现耐药现象,但它仍然是几种肿瘤的唯一治疗选择。因此,克服顺铂耐药性仍然是临床治疗的主要目标,也是科学研究的挑战。最近的研究揭示了线粒体在癌症的发生、进展和转移中的基本作用,以及它在化疗耐药性中的重要性。本文旨在概述线粒体在顺铂耐药性中的作用以及该研究领域的最新进展。最近的研究强调了线粒体 DNA 改变在耐药现象发生中的作用,这与氧化还原平衡的改变以及与细胞核的信号串扰有关,从而允许细胞代谢的重新布线。此外,线粒体动力学在癌细胞适应挑战性环境的适应机制中也起着重要作用。线粒体赋予肿瘤细胞生物能量可塑性,使细胞能够在包括化疗在内的应激条件下逃避死亡途径。到目前为止,尽管线粒体的核心作用得到了认可,但对于耐药性中涉及的具体机制知之甚少。然而,线粒体似乎是克服顺铂耐药性的有前途的药理学靶点,但仍需要进一步的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/371f/6678541/8f38a2a2627a/ijms-20-03384-g001.jpg

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