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重新审视卵巢癌的化疗耐药性:机制、生物标志物与精准医学。

Revisiting chemoresistance in ovarian cancer: Mechanism, biomarkers, and precision medicine.

作者信息

Guo Chong, Song Chaoying, Zhang Jiali, Gao Yisong, Qi Yuying, Zhao Zongyao, Yuan Chengfu

机构信息

College of Medical Science, China Three Gorges University, Yichang, Hubei 443002, PR China.

Third-Grade Pharmacological Laboratory on Chinese Medicine Approved by State Administration of Traditional Chinese Medicine, China Three Gorges University, Yichang, Hubei 443002, PR China.

出版信息

Genes Dis. 2020 Dec 1;9(3):668-681. doi: 10.1016/j.gendis.2020.11.017. eCollection 2022 May.

Abstract

Among the gynecological cancers, ovarian cancer is the most lethal. Its therapeutic options include a combination of chemotherapy with platinum-based compounds and cytoreductive surgery. Most ovarian cancer patients exhibit an initial response to platinum-based therapy, however, platinum resistance has led to up to 80% of this responsive cohort becoming refractory. Ovarian cancer recurrence and drug resistance to current chemotherapeutic options is a global challenge. Chemo-resistance is a complex phenomenon that involves multiple genes and signal transduction pathways. Therefore, it is important to elucidate on the underlying molecular mechanisms involved in chemo-resistance. This inform decisions regarding therapeutic management and help in the identification of novel and effective drug targets. Studies have documented the individual biomarkers of platinum-resistance in ovarian cancer that are potential therapeutic targets. This review summarizes the molecular mechanisms of platinum resistance in ovarian cancer, novel drug targets, and clinical outcomes.

摘要

在妇科癌症中,卵巢癌是致死率最高的。其治疗选择包括铂类化合物化疗与肿瘤细胞减灭术相结合。大多数卵巢癌患者对铂类疗法起初有反应,然而,铂耐药导致高达80%的有反应队列变得难治。卵巢癌复发和对当前化疗方案的耐药是一个全球性挑战。化疗耐药是一种涉及多个基因和信号转导通路的复杂现象。因此,阐明化疗耐药背后的潜在分子机制很重要。这有助于做出有关治疗管理的决策,并有助于识别新的有效药物靶点。研究记录了卵巢癌中铂耐药的个体生物标志物,它们是潜在的治疗靶点。本综述总结了卵巢癌铂耐药的分子机制、新的药物靶点和临床结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e4d8/9243319/c98084896ce2/gr1.jpg

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