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分析两个人胎盘来源间充质基质细胞群体的细胞外囊泡。

Profiling the extracellular vesicles of two human placenta-derived mesenchymal stromal cell populations.

作者信息

Khanabdali Ramin, Shojaee Mozhgan, Johnson Jancy, Law Sam Q K, Lim Melissa B L, James Patrick F, Tester Angus, Kalionis Bill

机构信息

Exopharm Ltd, Level 17, 31 Queen Street, Melbourne, VIC, 3000, Australia.

Exopharm Ltd, Level 17, 31 Queen Street, Melbourne, VIC, 3000, Australia; University of Melbourne Department of Biochemistry and Pharmacology, Parkville, VIC, 3052, Australia.

出版信息

Exp Cell Res. 2025 Jan 15;444(2):114387. doi: 10.1016/j.yexcr.2024.114387. Epub 2024 Dec 18.

Abstract

Increasing evidence shows extracellular vesicles (EVs) are primarily responsible for the beneficial effects of cell-based therapies. EVs derived from mesenchymal stromal cells (MSCs) show promise as a source of EVs for cell-free therapies. The human placental fetal-maternal interface is a rich and abundant source of MSCs from which EVs can be isolated. This study focusses on chorionic MSCs (CMSC) located on the fetal aspect of the interface and decidual MSCs (DMSC) on the maternal aspect. This study used Ligand-based Exosome Affinity Purification (LEAP) chromatography to isolate EVs from well-characterized placental hTERT-transduced CMSC29 and DMSC23 cell lines, which retain many important stem cell-like properties of primary CMSC and DMSC, respectively. After initial biophysical characterization of the EVs isolated from each cell line, the biological activities and the protein, lipid and small RNA contents of CMSC29-EVs and DMSC23-EVs were compared and assessed. LEAP-purified EVs from both sources were validated at the biophysical level by Spectradyne, Cryo-Transmission Electron Microscopy (Cryo-TEM), and Western blot analysis. EVs from each type were labelled with the live cell stain PKH26 and their in vitro uptake and internalization by human dermal fibroblast cells was assessed, as well as their phosphorylation of the protein kinase B/AKT (AKT) pathway. The protein and lipid contents were analyzed by mass spectrometry and the nucleic acid content by RNA sequencing (RNA-seq). Lastly, the biological activities of the EVs were evaluated in a BioMAP® Diversity PLUS® screen system across a panel of 12 human primary cell-based systems and in vitro cell proliferation. EVs isolated from both DMSC23 and CMSC29 significantly increased proliferation of fibroblasts and showed phosphorylation of the AKT pathway. Protein mass spectrometry analysis identified a large number of proteins including cell surface receptors, cytokines, chemokines, matrix molecules and enzymes in both EV types. Lipidomic analysis identified species including phosphatidylcholine, triacylglycerides and diacylglycerides in both DMSC23 and CMSC29-derived EVs. There were some significant differences in identified microRNAs (miRNAs) between the two EV types. The top differentially expressed miRNAs between the two EV types show pathways association with matrix interaction, transcriptional regulation, proliferation, cellular protein modification processes, and vasculogenesis. Differences were also detected between DMSC23- and CMSC29-EVs in the biological activity they displayed in the BioMAP® Diversity PLUS® screen.

摘要

越来越多的证据表明,细胞外囊泡(EVs)是基于细胞的疗法产生有益效果的主要原因。源自间充质基质细胞(MSCs)的EVs有望成为无细胞疗法中EVs的来源。人胎盘的胎儿-母体界面是丰富的MSCs来源,从中可以分离出EVs。本研究聚焦于位于界面胎儿侧的绒毛膜间充质干细胞(CMSC)和母体侧的蜕膜间充质干细胞(DMSC)。本研究使用基于配体的外泌体亲和纯化(LEAP)色谱法,从特征明确的胎盘hTERT转导的CMSC29和DMSC23细胞系中分离EVs,这两种细胞系分别保留了原代CMSC和DMSC的许多重要干细胞样特性。在对从每个细胞系分离出的EVs进行初步生物物理表征后,比较并评估了CMSC29-EVs和DMSC23-EVs的生物学活性以及蛋白质、脂质和小RNA含量。通过Spectradyne、冷冻透射电子显微镜(Cryo-TEM)和蛋白质印迹分析,在生物物理水平上验证了来自这两种来源的LEAP纯化的EVs。将每种类型的EVs用活细胞染料PKH26标记,并评估其被人皮肤成纤维细胞的体外摄取和内化情况,以及其对蛋白激酶B/AKT(AKT)途径的磷酸化作用。通过质谱分析蛋白质和脂质含量,通过RNA测序(RNA-seq)分析核酸含量。最后,在BioMAP® Diversity PLUS®筛选系统中,通过12种基于人原代细胞的系统和体外细胞增殖,评估了EVs的生物学活性。从DMSC23和CMSC29分离出的EVs均显著增加了成纤维细胞的增殖,并显示出AKT途径的磷酸化。蛋白质质谱分析在两种类型的EVs中均鉴定出大量蛋白质,包括细胞表面受体、细胞因子、趋化因子、基质分子和酶。脂质组学分析在源自DMSC23和CMSC29的EVs中均鉴定出包括磷脂酰胆碱、三酰甘油和二酰甘油在内 的物质。两种类型的EVs在已鉴定的微小RNA(miRNAs)方面存在一些显著差异。两种类型的EVs之间差异最明显的miRNAs显示出与基质相互作用、转录调控、增殖、细胞蛋白质修饰过程和血管生成相关的途径。在BioMAP® Diversity PLUS®筛选中,DMSC23-EVs和CMSC29-EVs所显示的生物学活性也存在差异。

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