Wang Zicong, Tan Wei, Li Bingyan, Zou Jingling, Li Yun, Xiao Yangyan, He Yan, Yoshida Shigeo, Zhou Yedi
Department of Ophthalmology, The Second Xiangya Hospital of Central South University, Changsha, Hunan, 410011, China.
Hunan Clinical Research Center of Ophthalmic Diseases, The Second Xiangya Hospital of Central South University, Changsha, Hunan, 410011, China.
Heliyon. 2023 Jul 24;9(8):e18626. doi: 10.1016/j.heliyon.2023.e18626. eCollection 2023 Aug.
Exosomes are extracellular vesicles that can be produced by most cells. Exosomes act as important intermediaries in intercellular communication, and participate in a variety of biological activities between cells. Non-coding RNAs (ncRNAs) usually refer to RNAs that do not encode proteins. Although ncRNAs have no protein-coding capacity, they are able to regulate gene expression at multiple levels. Angiogenesis is the formation of new blood vessels from pre-existing vessels, which is an important physiological process. However, abnormal angiogenesis could induce many diseases such as atherosclerosis, diabetic retinopathy and cancer. Many studies have shown that ncRNAs can stably exist in exosomes and play a wide range of physiological and pathological roles including regulation of angiogenesis. In brief, some specific ncRNAs can be enriched in exosomes secreted by cells and absorbed by recipient cells through the exosome pathway, thus activating relevant signaling pathways in target cells and playing a role in regulating angiogenesis. In this review, we describe the physiological and pathological functions of exosomal ncRNAs in angiogenesis, summarize their role in angiogenesis-related diseases, and illustrate potential clinical applications like novel drug therapy strategies and diagnostic markers in exosome research as inspiration for future investigations.
外泌体是大多数细胞都能产生的细胞外囊泡。外泌体作为细胞间通讯的重要介质,参与细胞间的多种生物学活动。非编码RNA(ncRNA)通常是指不编码蛋白质的RNA。虽然ncRNA没有蛋白质编码能力,但它们能够在多个水平上调节基因表达。血管生成是指从已有的血管形成新的血管,这是一个重要的生理过程。然而,异常的血管生成会诱发许多疾病,如动脉粥样硬化、糖尿病视网膜病变和癌症。许多研究表明,ncRNA可以稳定地存在于外泌体中,并发挥广泛的生理和病理作用,包括对血管生成的调节。简而言之,一些特定的ncRNA可以在外泌体中富集,这些外泌体由细胞分泌并通过外泌体途径被受体细胞吸收,从而激活靶细胞中的相关信号通路,在调节血管生成中发挥作用。在本综述中,我们描述了外泌体ncRNA在血管生成中的生理和病理功能,总结了它们在血管生成相关疾病中的作用,并阐述了外泌体研究中潜在的临床应用,如新型药物治疗策略和诊断标志物,为未来的研究提供灵感。