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低氧诱导因子-1α 和促炎信号增强间充质干细胞衍生的细胞外囊泡的免疫调节活性。

HIF-1α and Pro-Inflammatory Signaling Improves the Immunomodulatory Activity of MSC-Derived Extracellular Vesicles.

机构信息

Regenerative Medicine and Heart Transplantation Unit, Instituto de Investigación Sanitaria La Fe, 46026 Valencia, Spain.

Àrea de Parasitologia, Departament de Farmàcia i Tecnologia Farmacèutica i Parasitologia, Universitat de València, Av. V.A. Estellés s/n, 46100 Valencia, Spain.

出版信息

Int J Mol Sci. 2021 Mar 26;22(7):3416. doi: 10.3390/ijms22073416.

Abstract

Despite the strong evidence for the immunomodulatory activity of mesenchymal stromal cells (MSCs), clinical trials have so far failed to clearly show benefit, likely reflecting methodological shortcomings and lack of standardization. MSC-mediated tissue repair is commonly believed to occur in a paracrine manner, and it has been stated that extracellular vesicles (EVs) secreted by MSCs (EVMSC) are able to recapitulate the immunosuppressive properties of parental cells. As a next step, clinical trials to corroborate preclinical studies should be performed. However, effective dose in large mammals, including humans, is quite high and EVs industrial production is hindered by the proliferative senescence that affects MSCs during massive cell expansion. We generated a genetically modified MSC cell line overexpressing hypoxia-inducible factor 1-alpha and telomerase to increase the therapeutic potency of EVMSC and facilitate their large-scale production. We also developed a cytokine-based preconditioning culture medium to prime the immunomodulatory response of secreted EVs (EV). We tested the efficacy of this system in vitro and in a delayed-type hypersensitivity mouse model. MSC-T with an HIF-1α-GFP lentiviral vector (MSC-T-HIF) can be effectively expanded to obtain large amounts of EVs without major changes in cell phenotype and EVs composition. EV suppressed the proliferation of activated T-cells more effectively than did EVs from unmodified MSC in vitro, and significantly blunted the ear-swelling response in vivo by inhibiting cell infiltration and improving tissue integrity. We have developed a long-lived EV source that secretes high quantities of immunosuppressive EVs, facilitating a more standard and cost-effective therapeutic product.

摘要

尽管间充质基质细胞 (MSCs) 的免疫调节活性有很强的证据,但临床试验迄今为止未能明确显示其益处,这可能反映了方法学上的缺陷和缺乏标准化。MSCs 介导的组织修复通常被认为是以旁分泌的方式发生的,并且已经表明 MSCs 分泌的细胞外囊泡 (EVMSC) 能够重现亲本细胞的免疫抑制特性。作为下一步,应该进行临床试验以证实临床前研究。然而,包括人类在内的大型哺乳动物的有效剂量相当高,并且 EVs 的工业生产受到影响 MSC 大量细胞扩增时的增殖衰老的阻碍。我们生成了一种过表达低氧诱导因子 1-α和端粒酶的基因修饰 MSC 细胞系,以增加 EVMSC 的治疗效力并促进其大规模生产。我们还开发了一种基于细胞因子的预处理培养基,以启动分泌 EV(EV)的免疫调节反应。我们在体外和迟发型超敏反应小鼠模型中测试了该系统的功效。带有 HIF-1α-GFP 慢病毒载体的 MSC-T(MSC-T-HIF)可以有效地扩增以获得大量 EV,而细胞表型和 EV 组成没有重大变化。EV 在体外比未经修饰的 MSC 的 EV 更有效地抑制激活的 T 细胞的增殖,并且通过抑制细胞浸润和改善组织完整性,显著减轻体内耳肿胀反应。我们已经开发出一种长寿的 EV 来源,它分泌大量免疫抑制 EV,从而使治疗产品更标准、更具成本效益。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5fad/8036951/0505ac4809f8/ijms-22-03416-g001.jpg

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