Alcayaga-Miranda F, Varas-Godoy M, Khoury M
Laboratory of Nano-Regenerative Medicine, Faculty of Medicine, Universidad de Los Andes, 7620001 Santiago, Chile; Cells for Cells, 7620001 Santiago, Chile.
Laboratory of Reproductive Biology, Faculty of Medicine, Universidad de Los Andes, 7620001 Santiago, Chile.
Stem Cells Int. 2016;2016:3409169. doi: 10.1155/2016/3409169. Epub 2016 Apr 3.
Mesenchymal stem cells (MSCs) are known to display important regenerative properties through the secretion of proangiogenic factors. Recent evidence pointed at the key role played by exosomes released from MSCs in this paracrine mechanism. Exosomes are key mediators of intercellular communication and contain a cargo that includes a modifiable content of microRNA (miRNA), mRNA, and proteins. Since the biogenesis of the MSCs-derived exosomes is regulated by the cross talk between MSCs and their niche, the content of the exosomes and consequently their biological function are dependent on the cell of origin and the physiologic or pathologic status of their microenvironment. Recent preclinical studies revealed that MSCs-derived exosomes have a critical implication in the angiogenic process since the use of exosomes-depleted conditioned medium impaired the MSCs angiogenesis response. In this review, we discuss the current knowledge related to the angiogenic potential of MSCs-exosomes and methods to enhance their biological activities for improved vascular regeneration. The current gain of insight in exosomes studies highlights the power of combining cell based therapies and their secreted products in therapeutic angiogenesis.
间充质干细胞(MSCs)已知可通过分泌促血管生成因子展现出重要的再生特性。最近的证据表明,MSCs释放的外泌体在这种旁分泌机制中发挥着关键作用。外泌体是细胞间通讯的关键介质,其携带的物质包括可修饰的微小RNA(miRNA)、信使核糖核酸(mRNA)和蛋白质。由于MSCs来源外泌体的生物发生受MSCs与其微环境之间相互作用的调控,外泌体的内容物及其生物学功能取决于其来源细胞及其微环境的生理或病理状态。最近的临床前研究表明,MSCs来源的外泌体在血管生成过程中具有关键作用,因为使用去除外泌体的条件培养基会损害MSCs的血管生成反应。在这篇综述中,我们讨论了与MSCs外泌体血管生成潜力相关的当前知识,以及增强其生物活性以改善血管再生的方法。目前在外泌体研究方面的深入了解凸显了在治疗性血管生成中将基于细胞的疗法与其分泌产物相结合的作用。