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无血清培养的间充质基质细胞释放含有“治疗”miRNA 货物的细胞外囊泡,可改善软骨炎症。

Xeno-free cultured mesenchymal stromal cells release extracellular vesicles with a "therapeutic" miRNA cargo ameliorating cartilage inflammation .

机构信息

Department of Experimental Medicine, University of Genoa, Genoa, Italy.

Lung Cancer Unit, IRCCS Ospedale Policlinico San Martino, Genoa, Italy.

出版信息

Theranostics. 2023 Mar 5;13(5):1470-1489. doi: 10.7150/thno.77597. eCollection 2023.

Abstract

Mesenchymal stromal cells (MSCs)-derived extracellular vesicles (EVs) emerged as an innovative strategy for the treatment of chronic disorders such as osteoarthritis (OA). Biological activity of EVs is generally driven by their cargo, which might be influenced by microenvironment. Therefore, pre-conditioning strategies, including modifications in culture conditions or oxygen tension could directly impact on MSCs paracrine activity. In this study we selected an appropriate preconditioning system to induce cells to perform the most suitable therapeutic response by EV-encapsulated bioactive factors. A xeno-free supplement (XFS) was used for isolation and expansion of MSCs and compared to conventional fetal bovine serum (FBS) culture. Bone Marrow-derived MSCs (BMSCs) were pre-conditioned under normoxia (20% O) or under hypoxia (1% O) and EVs production was evaluated. Anti-OA activity was evaluated by using an inflammatory model. miRNA content was also explored, to select putative miRNA that could be involved in a biological function. Modulation of IL-6, IL-8, COX-2 and PGE2 was evaluated on hACs simultaneously treated with IL-1α and BMSC-derived EVs. FBS-sEVs exerted a blunt inhibitory effect, while a strong anti-inflammatory outcome was achieved by XFS-sEVs. Interestingly, in both cases hypoxia pre-conditioning allowed to increase EVs effectiveness. Analysis of miRNA content showed the upregulation in XFS-hBMSC-derived EVs of miRNA known to have a chondroprotective role, such as let-7b-5p, miR-17, miR-145, miR-21-5p, miR-214-3p, miR-30b-5p, miR-30c-5p. Activated pathways and target genes were investigated and upregulated miRNAs functionally validated in target cells. MiR-145 and miR-214 were found to protect chondrocytes from IL-1α-induced inflammation and to reduce production of pro-inflammatory cytokines. XFS medium was found to be suitable for isolation and expansion of MSCs, secreting EVs with a therapeutic cargo. The application of cells cultured exclusively in XFS overcomes issues of safety associated with serum-containing media and makes ready-to-use clinical therapies more accessible.

摘要

间充质基质细胞(MSCs)衍生的细胞外囊泡(EVs)作为一种治疗骨关节炎(OA)等慢性疾病的创新策略而出现。EV 的生物学活性通常由其携带的货物驱动,而货物可能受到微环境的影响。因此,包括改变培养条件或氧张力在内的预处理策略可以直接影响 MSC 的旁分泌活性。在这项研究中,我们选择了一种合适的预处理系统,通过包裹生物活性因子的 EV 来诱导细胞产生最合适的治疗反应。一种无动物来源的补充剂(XFS)用于 MSC 的分离和扩增,并与传统的胎牛血清(FBS)培养进行比较。骨髓来源的 MSC(BMSCs)在常氧(20% O)或低氧(1% O)下进行预处理,并评估 EV 的产生。通过使用炎症模型来评估抗 OA 活性。还探索了 miRNA 含量,以选择可能参与生物学功能的假定 miRNA。同时用 IL-1α 和 BMSC 衍生的 EV 处理 hACs,评估 IL-6、IL-8、COX-2 和 PGE2 的调节。FBS-sEVs 表现出钝性抑制作用,而 XFS-sEVs 则产生强烈的抗炎效果。有趣的是,在这两种情况下,低氧预处理都允许增加 EVs 的有效性。miRNA 含量分析显示,在 XFS-hBMSC 衍生的 EVs 中,miRNA 的表达上调,这些 miRNA 已知具有软骨保护作用,如 let-7b-5p、miR-17、miR-145、miR-21-5p、miR-214-3p、miR-30b-5p、miR-30c-5p。研究了激活的途径和靶基因,并在靶细胞中对上调的 miRNA 进行了功能验证。发现 miR-145 和 miR-214 可保护软骨细胞免受 IL-1α 诱导的炎症,并减少促炎细胞因子的产生。发现 XFS 培养基适合 MSC 的分离和扩增,分泌具有治疗作用的 EV。仅在 XFS 中培养的细胞的应用克服了与含血清培养基相关的安全性问题,并使即用型临床治疗更易于获得。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0312/10086204/dcac91632e2c/thnov13p1470g001.jpg

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