Extracellular vesicles in cancer — implications for future improvements in cancer care

微泡 间质细胞 癌细胞 转移 生物 癌症 细胞外小泡 小RNA 肿瘤微环境 微泡 分泌物 细胞 癌症研究 电池类型 细胞生物学 基因 遗传学 生物化学
作者
Rong Xu,Alin Rai,Maoshan Chen,Wittaya Suwakulsiri,David W. Greening,Richard J. Simpson
出处
期刊:Nature Reviews Clinical Oncology [Springer Nature]
卷期号:15 (10): 617-638 被引量:1410
标识
DOI:10.1038/s41571-018-0036-9
摘要

The sustained growth, invasion, and metastasis of cancer cells depend upon bidirectional cell–cell communication within complex tissue environments. Such communication predominantly involves the secretion of soluble factors by cancer cells and/or stromal cells within the tumour microenvironment (TME), although these cell types have also been shown to export membrane-encapsulated particles containing regulatory molecules that contribute to cell–cell communication. These particles are known as extracellular vesicles (EVs) and include species of exosomes and shed microvesicles. EVs carry molecules such as oncoproteins and oncopeptides, RNA species (for example, microRNAs, mRNAs, and long non-coding RNAs), lipids, and DNA fragments from donor to recipient cells, initiating profound phenotypic changes in the TME. Emerging evidence suggests that EVs have crucial roles in cancer development, including pre-metastatic niche formation and metastasis. Cancer cells are now recognized to secrete more EVs than their nonmalignant counterparts, and these particles can be isolated from bodily fluids. Thus, EVs have strong potential as blood-based or urine-based biomarkers for the diagnosis, prognostication, and surveillance of cancer. In this Review, we discuss the biophysical properties and physiological functions of EVs, particularly their pro-metastatic effects, and highlight the utility of EVs for the development of cancer diagnostics and therapeutics. Emerging evidence indicates that tumour-derived extracellular vesicles (EVs), notably exosomes, mediate intercellular communication to promote cancer development and progression. Herein, the authors discuss EV properties and physiological functions, particularly their pro-metastatic effects, and highlight the diagnostic and therapeutic potential of EVs in cancer.
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