Exosomes in diagnostic and therapeutic applications of ovarian cancer

IF 3.8 3区 医学 Q1 REPRODUCTIVE BIOLOGY Journal of Ovarian Research Pub Date : 2024-05-25 DOI:10.1186/s13048-024-01417-0
Dhaval Bhavsar, Rajeswari Raguraman, Dongin Kim, Xiaoyu Ren, Anupama Munshi, Kathleen Moore, Vassilios Sikavitsas, Rajagopal Ramesh
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Abstract

Ovarian cancer accounts for more deaths than any other female reproductive tract cancer. The major reasons for the high mortality rates include delayed diagnoses and drug resistance. Hence, improved diagnostic and therapeutic options for ovarian cancer are a pressing need. Extracellular vesicles (EVs), that include exosomes provide hope in both diagnostic and therapeutic aspects. They are natural lipid nanovesicles secreted by all cell types and carry molecules that reflect the status of the parent cell. This facilitates their potential use as biomarkers for an early diagnosis. Additionally, EVs can be loaded with exogenous cargo, and have features such as high stability and favorable pharmacokinetic properties. This makes them ideal for tumor-targeted delivery of biological moieties. The International Society of Extracellular Vesicles (ISEV) based on the Minimal Information for Studies on Extracellular Vesicles (MISEV) recommends the usage of the term “small extracellular vesicles (sEVs)” that includes exosomes for particles that are 30–200 nm in size. However, majority of the studies reported in the literature and relevant to this review have used the term “exosomes”. Therefore, this review will use the term “exosomes” interchangeably with sEVs for consistency with the literature and avoid confusion to the readers. This review, initially summarizes the different isolation and detection techniques developed to study ovarian cancer-derived exosomes and the potential use of these exosomes as biomarkers for the early diagnosis of this devastating disease. It addresses the role of exosome contents in the pathogenesis of ovarian cancer, discusses strategies to limit exosome-mediated ovarian cancer progression, and provides options to use exosomes for tumor-targeted therapy in ovarian cancer. Finally, it states future research directions and recommends essential research needed to successfully transition exosomes from the laboratory to the gynecologic-oncology clinic.
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外泌体在卵巢癌诊断和治疗中的应用
卵巢癌造成的死亡人数高于其他任何女性生殖道癌症。死亡率高的主要原因包括诊断延误和耐药性。因此,迫切需要改进卵巢癌的诊断和治疗方案。包括外泌体在内的细胞外囊泡(EVs)为诊断和治疗带来了希望。它们是所有细胞类型分泌的天然脂质纳米囊泡,携带的分子能反映母细胞的状态。这有助于它们作为生物标记物用于早期诊断。此外,EVs 还可以装载外源货物,并具有高稳定性和良好的药代动力学特性等特点。这使它们成为肿瘤靶向输送生物分子的理想选择。国际细胞外囊泡学会(ISEV)根据《细胞外囊泡研究的最低限度信息》(MISEV)建议使用 "小细胞外囊泡(sEVs)"一词,包括外泌体在内的 30-200 纳米大小的颗粒。不过,文献中报道的与本综述相关的大多数研究都使用了 "外泌体 "一词。因此,为了与文献保持一致,避免读者产生混淆,本综述将 "外泌体 "与 sEVs 互换使用。本综述首先总结了为研究卵巢癌外泌体而开发的不同分离和检测技术,以及这些外泌体作为生物标记物用于早期诊断这种毁灭性疾病的潜力。报告探讨了外泌体内容物在卵巢癌发病机制中的作用,讨论了限制外泌体介导的卵巢癌进展的策略,并提供了将外泌体用于卵巢癌肿瘤靶向治疗的方案。最后,报告指出了未来的研究方向,并推荐了将外泌体从实验室成功应用于妇科肿瘤临床所需的基本研究。
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来源期刊
Journal of Ovarian Research
Journal of Ovarian Research REPRODUCTIVE BIOLOGY-
CiteScore
6.20
自引率
2.50%
发文量
125
审稿时长
>12 weeks
期刊介绍: Journal of Ovarian Research is an open access, peer reviewed, online journal that aims to provide a forum for high-quality basic and clinical research on ovarian function, abnormalities, and cancer. The journal focuses on research that provides new insights into ovarian functions as well as prevention and treatment of diseases afflicting the organ. Topical areas include, but are not restricted to: Ovary development, hormone secretion and regulation Follicle growth and ovulation Infertility and Polycystic ovarian syndrome Regulation of pituitary and other biological functions by ovarian hormones Ovarian cancer, its prevention, diagnosis and treatment Drug development and screening Role of stem cells in ovary development and function.
期刊最新文献
The discriminatory capability of anthropometric measures in predicting reproductive outcomes in Chinese women with PCOS Long non-coding ribonucleic acid SNHG18 induced human granulosa cell apoptosis via disruption of glycolysis in ovarian aging Research progress of ferroptosis in female infertility Bone marrow mesenchymal stem cells expressing Neat-1, Hotair-1, miR-21, miR-644, and miR-144 subsided cyclophosphamide-induced ovarian insufficiency by remodeling the IGF-1–kisspeptin system, ovarian apoptosis, and angiogenesis Stem cell-derived extracellular vesicles in premature ovarian failure: an up-to-date meta-analysis of animal studies
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