Amini Hassan, Rezabakhsh Aysa, Heidarzadeh Morteza, Hassanpour Mehdi, Hashemzadeh Shahriar, Ghaderi Shahrouz, Sokullu Emel, Rahbarghazi Reza, Reiter Russel J
Student Research Committee, Tabriz University of Medical Sciences, Tabriz, Iran.
Cardiovascular Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.
Front Cell Dev Biol. 2021 Jun 8;9:686551. doi: 10.3389/fcell.2021.686551. eCollection 2021.
During the last two decades, melatonin has been found to have pleiotropic effects via different mechanisms on its target cells. Data are abundant for some aspects of the signaling pathways within cells while other casual mechanisms have not been adequately addressed. From an evolutionary perspective, eukaryotic cells are equipped with a set of interrelated endomembrane systems consisting of intracellular organelles and secretory vesicles. Of these, exosomes are touted as cargo-laden secretory vesicles that originate from the endosomal multivesicular machinery which participate in a mutual cross-talk at different cellular interfaces. It has been documented that cells transfer various biomolecules and genetic elements through exosomes to sites remote from the original cell in a paracrine manner. Findings related to the molecular mechanisms between melatonin and exosomal biogenesis and cargo sorting are the subject of the current review. The clarification of the interplay between melatonin and exosome biogenesis and cargo sorting at the molecular level will help to define a cell's secretion capacity. This review precisely addresses the role and potential significance of melatonin in determining the efflux capacity of cells via the exosomal pathway. Certain cells, for example, stem cells actively increase exosome efflux in response to melatonin treatment which accelerates tissue regeneration after transplantation into the injured sites.
在过去二十年中,人们发现褪黑素通过不同机制对其靶细胞具有多效性作用。细胞内信号通路某些方面的数据丰富,而其他偶然机制尚未得到充分探讨。从进化的角度来看,真核细胞配备了一组由细胞内细胞器和分泌囊泡组成的相互关联的内膜系统。其中,外泌体被认为是富含货物的分泌囊泡,起源于内体多囊泡机制,参与不同细胞界面的相互串扰。有文献记载,细胞通过外泌体以旁分泌方式将各种生物分子和遗传元件转移到远离原始细胞的部位。褪黑素与外泌体生物发生和货物分选之间分子机制的相关研究结果是本综述的主题。在分子水平上阐明褪黑素与外泌体生物发生和货物分选之间的相互作用,将有助于确定细胞的分泌能力。本综述精确阐述了褪黑素在通过外泌体途径决定细胞外排能力方面的作用和潜在意义。例如,某些细胞,如干细胞,在接受褪黑素处理后会积极增加外泌体的外排,这加速了移植到损伤部位后的组织再生。