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卵巢癌、癌症干细胞和当前治疗策略:Magmas 在当前治疗方法中的潜在作用。

Ovarian Cancer, Cancer Stem Cells and Current Treatment Strategies: A Potential Role of Magmas in the Current Treatment Methods.

机构信息

Fiona Elsey Cancer Research Institute, Ballarat, Victoria 3353, Australia.

Federation University Australia, Ballarat, Victoria 3353, Australia.

出版信息

Cells. 2020 Mar 14;9(3):719. doi: 10.3390/cells9030719.

Abstract

Epithelial ovarian cancer (EOC) constitutes 90% of ovarian cancers (OC) and is the eighth most common cause of cancer-related death in women. The cancer histologically and genetically is very complex having a high degree of tumour heterogeneity. The pathogenic variability in OC causes significant impediments in effectively treating patients, resulting in a dismal prognosis. Disease progression is predominantly influenced by the peritoneal tumour microenvironment rather than properties of the tumor and is the major contributor to prognosis. Standard treatment of OC patients consists of debulking surgery, followed by chemotherapy, which in most cases end in recurrent chemoresistant disease. This review discusses the different origins of high-grade serous ovarian cancer (HGSOC), the major sub-type of EOC. Tumour heterogeneity, genetic/epigenetic changes, and cancer stem cells (CSC) in facilitating HGSOC progression and their contribution in the circumvention of therapy treatments are included. Several new treatment strategies are discussed including our preliminary proof of concept study describing the role of mitochondria-associated granulocyte macrophage colony-stimulating factor signaling protein (Magmas) in HGSOC and its unique potential role in chemotherapy-resistant disease.

摘要

上皮性卵巢癌 (EOC) 占卵巢癌 (OC) 的 90%,是女性癌症相关死亡的第八大常见原因。从组织学和遗传学上看,这种癌症非常复杂,具有高度的肿瘤异质性。OC 的发病机制多样性给患者的有效治疗带来了重大障碍,导致预后不佳。疾病的进展主要受腹膜肿瘤微环境的影响,而不是肿瘤的特性,这是预后的主要因素。OC 患者的标准治疗包括肿瘤细胞减灭术,随后进行化疗,但在大多数情况下,这会导致复发性耐药性疾病。本文综述了高级别浆液性卵巢癌 (HGSOC) 的不同起源,HGSOC 是 EOC 的主要亚型。肿瘤异质性、遗传/表观遗传变化和癌症干细胞 (CSC) 促进 HGSOC 进展及其在规避治疗中的作用都包含在内。还讨论了几种新的治疗策略,包括我们初步的概念验证研究,该研究描述了线粒体相关粒细胞巨噬细胞集落刺激因子信号蛋白 (Magmas) 在 HGSOC 中的作用及其在化疗耐药疾病中的独特潜在作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/168a/7140629/fe9489a48c9c/cells-09-00719-g001.jpg

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