Rincón-Riveros Andrés, Lopez Liliana, Villegas E Victoria, Antonia Rodriguez Josefa
Bioinformatics and Systems Biology Group, Institute for Genetics, Universidad Nacional de Colombia, Bogotá 111321, Colombia.
Department of Statistics, Universidad Nacional de Colombia, Bogotá 111321, Colombia.
Cancers (Basel). 2021 Feb 17;13(4):847. doi: 10.3390/cancers13040847.
Exosomes are lipid membrane-enclosed vesicles released by all cell types that act at the paracrine or endocrine level to favor cell differentiation, tissue homeostasis, organ remodeling and immune regulation. Their biosynthesis begins with a cell membrane invagination which generates an early endosome that matures to a late endosome. By inward budding of the late endosome membrane, a multivesicular body (MVB) with intraluminal vesicles (ILVs) is generated. The fusion of MVBs with the plasma membrane releases ILVs into the extracellular space as exosomes, ranging in size from 30 to 100 nm in diameter. The bilipid exosome membrane is rich in cholesterol, ceramides and phosphatidylserine and can be loaded with DNA, RNA, microRNAs, proteins and lipids. It has been demonstrated that exosome secretion is a common mechanism used by the tumor to generate an immunosuppressive microenvironment that favors cancer development and progression, allowing tumor escape from immune control. Due to their ability to transport proteins, lipids and nucleic acids from the cell that gave rise to them, exosomes can be used as a source of biomarkers with great potential for clinical applications in diagnostic, prognostic or therapeutic areas. This article will review the latest research findings on exosomes and their contribution to cancer development.
外泌体是由所有细胞类型释放的脂质膜包裹的囊泡,它们在旁分泌或内分泌水平发挥作用,促进细胞分化、组织稳态、器官重塑和免疫调节。其生物合成始于细胞膜内陷,形成早期内体,后者成熟为晚期内体。通过晚期内体膜的向内出芽,产生了带有腔内囊泡(ILV)的多泡体(MVB)。MVB与质膜融合将ILV作为外泌体释放到细胞外空间,直径范围为30至100纳米。双脂外泌体膜富含胆固醇、神经酰胺和磷脂酰丝氨酸,并且可以装载DNA、RNA、微小RNA、蛋白质和脂质。已经证明,外泌体分泌是肿瘤用于产生有利于癌症发展和进展的免疫抑制微环境的常见机制,使肿瘤能够逃避免疫控制。由于外泌体能够从产生它们的细胞中运输蛋白质、脂质和核酸,因此外泌体可作为生物标志物来源,在诊断、预后或治疗领域具有巨大的临床应用潜力。本文将综述关于外泌体及其对癌症发展贡献的最新研究发现。