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Targeting Mitochondria for Treatment of Chemoresistant Ovarian Cancer

机译:靶向线粒体治疗化学耐药性卵巢癌

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Ovarian cancer is the leading cause of death from gynecologic malignancy in the Western world. This is due, in part, to the fact that despite standard treatment of surgery and platinum/paclitaxel most patients recur with ultimately chemoresistant disease. Ovarian cancer is a unique form of solid tumor that develops, metastasizes and recurs in the same space, the abdominal cavity, which becomes a unique microenvironment characterized by ascites, hypoxia and low glucose levels. It is under these conditions that cancer cells adapt and switch to mitochondrial respiration, which becomes crucial to their survival, and therefore an ideal metabolic target for chemoresistant ovarian cancer. Importantly, independent of microenvironmental factors, mitochondria spatial redistribution has been associated to both tumor metastasis and chemoresistance in ovarian cancer while specific sets of genetic mutations have been shown to cause aberrant dependence on mitochondrial pathways in the most aggressive ovarian cancer subtypes. In this review we summarize on targeting mitochondria for treatment of chemoresistant ovarian cancer and current state of understanding of the role of mitochondria respiration in ovarian cancer. We feel this is an important and timely topic given that ovarian cancer remains the deadliest of the gynecological diseases, and that the mitochondrial pathway has recently emerged as critical in sustaining solid tumor progression.
机译:卵巢癌是西方世界妇科恶性肿瘤死亡的主要原因。这部分是由于以下事实:尽管对外科手术和铂/紫杉醇进行了标准治疗,但大多数患者最终还是会复发化学耐药性疾病。卵巢癌是实体瘤的一种独特形式,它在相同的空间即腹腔内发展,转移和复发,从而成为具有腹水,低氧和低血糖水平的独特微环境。在这些条件下,癌细胞适应并转换为线粒体呼吸,这对于它们的生存至关重要,因此是抗化学性卵巢癌的理想代谢靶点。重要的是,与微环境因素无关,线粒体的空间再分布与卵巢癌的肿瘤转移和化学耐药性有关,而特定的基因突变集已显示出在最积极的卵巢癌亚型中异常依赖线粒体途径。在这篇综述中,我们总结了靶向线粒体以治疗化学耐药性卵巢癌以及目前对线粒体呼吸作用在卵巢癌中的作用的了解情况。鉴于卵巢癌仍然是妇科疾病中最致命的疾病,而线粒体途径最近对于维持实体瘤的进展至关重要,因此我们认为这是一个重要而及时的话题。

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