Interaction between mesenchymal stromal cell‐derived extracellular vesicles and immune cells by distinct protein content

免疫系统 间充质干细胞 趋化因子 生物 间质细胞 CXCL2型 细胞生物学 趋化因子受体 炎症 免疫学 20立方厘米 蛋白质组 癌症研究 生物信息学
作者
Soura Mardpour,Amir Ali Hamidieh,Sara Taleahmad,Farzaneh Sharifzad,Adeleh Taghikhani,Hossein Baharvand
出处
期刊:Journal of Cellular Physiology [Wiley]
卷期号:234 (6): 8249-8258 被引量:124
标识
DOI:10.1002/jcp.27669
摘要

Abstract Mesenchymal stromal cells (MSCs) can effectively contribute to tissue regeneration inside the inflammatory microenvironment mostly through modulating immune responses. MSC‐derived extracellular vesicles (MSC‐EVs) display immunoregulatory functions similar to parent cells. Interactions between MSC‐EVs and immune cells make them an ideal therapeutic candidate for infectious, inflammatory, and autoimmune diseases. These properties of MSC‐EVs have encouraged researchers to perform extensive studies on multiple factors that mediate MSC‐EVs immunomodulatory effects. Investigation of proteins involved in the complex interplay of MSC‐EVs and immune cells may help us to better understand their functions. Here, we performed a comprehensive proteomic analysis of MSC‐EVs that was previously reported by ExoCarta database. A total of 938 proteins were identified as MSC‐EV proteome using quantitative proteomics techniques. Kyoto Encyclopedia of Genes and Genomes analysis demonstrates that ECM–receptor interaction, focal adhesion, and disease‐specific pathways are enriched in MSC‐EVs. By detail analysis of proteins presence in immune system process, we found that expression of some cytokines, chemokines, and chemokine receptors such as IL10, HGF, LIF, CCL2, VEGFC, and CCL20, which leads to migration of MSC‐EVs to injured sites, suppression of inflammation and promotion of regeneration in inflammatory and autoimmune diseases. Also, some chemoattractant proteins such as CXCL2, CXCL8, CXCL16, DEFA1, HERC5, and IFITM2 were found in MSC‐EV proteome. They may actively recruit immune cells to the proximity of MSC or MSC‐EVs, may result in boosting immune response under specific circumstances, and may have protective role in infectious diseases. In this review, we summarize available information about immunomodulation of MSC‐EVs with particular emphasis on their proteomics analysis.
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