Mesenchymal stem cell derived-exosomes: a modern approach in translational medicine.
Sepideh NikfarjamJafar RezaieNaime Majidi ZolbaninReza JafariPublished in: Journal of translational medicine (2020)
Mesenchymal stem cells (MSCs) have captured great attention in regenerative medicine for over a few decades by virtue of their differentiation capacity, potent immunomodulatory properties, and their ability to be favorably cultured and manipulated. Recent investigations implied that the pleiotropic effects of MSCs is not associated to their ability of differentiation, but rather is mediated by the secretion of soluble paracrine factors. Exosomes, nanoscale extracellular vesicles, are one of these paracrine mediators. Exosomes transfer functional cargos like miRNA and mRNA molecules, peptides, proteins, cytokines and lipids from MSCs to the recipient cells. Exosomes participate in intercellular communication events and contribute to the healing of injured or diseased tissues and organs. Studies reported that exosomes alone are responsible for the therapeutic effects of MSCs in numerous experimental models. Therefore, MSC-derived exosomes can be manipulated and applied to establish a novel cell-free therapeutic approach for treatment of a variety of diseases including heart, kidney, liver, immune and neurological diseases, and cutaneous wound healing. In comparison with their donor cells, MSC-derived exosomes offer more stable entities and diminished safety risks regarding the administration of live cells, e.g. microvasculature occlusion risk. This review discusses the exosome isolation methods invented and utilized in the clinical setting thus far and presents a summary of current information on MSC exosomes in translational medicine.
Keyphrases
- mesenchymal stem cells
- umbilical cord
- induced apoptosis
- bone marrow
- cell cycle arrest
- cell free
- cell therapy
- stem cells
- heart failure
- gene expression
- cell proliferation
- endoplasmic reticulum stress
- signaling pathway
- mass spectrometry
- fatty acid
- binding protein
- blood brain barrier
- human health
- amino acid
- combination therapy