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Aggregation of human mesenchymal stromal cells (MSCs) into 3D spheroids enhances their antiinflammatory properties

机译:人间充质基质细胞(MSC)聚集为3D球状体可增强其抗炎特性

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摘要

Previous reports suggested that culture as 3D aggregates or as spheroids can increase the therapeutic potential of the adult stem/progenitor cells referred to as mesenchymal stem cells or multipotent mesenchymal stromal cells (MSCs). Here we used a hanging drop protocol to prepare human MSCs (hMSCs) as spheroids that maximally expressed TNFα stimulated gene/protein 6 (TSG-6), the antiinflammatory protein that was expressed at high levels by hMSCs trapped in the lung after i.v. infusion and that largely explained the beneficial effects of hMSCs in mice with myocardial infarcts. The properties of spheroid hMSCs were found to depend critically on the culture conditions. Under optimal conditions for expression of TSG-6, the hMSCs also expressed high levels of stanniocalcin-1, a protein with both antiinflammatory and antiapoptotic properties. In addition, they expressed high levels of three anticancer proteins: IL-24, TNFα-related apoptosis inducing ligand, and CD82. The spheroid hMSCs were more effective than hMSCs from adherent monolayer cultures in suppressing inflammatory responses in a coculture system with LPS-activated macrophages and in a mouse model for peritonitis. In addition, the spheroid hMSCs were about one-fourth the volume of hMSCs from adherent cultures. Apparently as a result, larger numbers of the cells trafficked through the lung after i.v. infusion and were recovered in spleen, liver, kidney, and heart. The data suggest that spheroid hMSCs may be more effective than hMSCs from adherent cultures in therapies for diseases characterized by sterile tissue injury and unresolved inflammation and for some cancers that are sensitive to antiinflammatory agents.
机译:先前的报道表明,以3D聚集体或球体形式进行培养可以提高成年干/祖细胞(称为间充质干细胞或多能间充质基质细胞(MSC))的治疗潜力。在这里,我们使用悬滴方案将人MSC(hMSC)制备为最大表达TNFα刺激的基因/蛋白质6(TSG-6)的球状体。输注,这在很大程度上解释了hMSC在心肌梗塞小鼠中的有益作用。发现球状hMSC的特性关键取决于培养条件。在表达TSG-6的最佳条件下,hMSCs还表达了高水平的斯坦尼钙素-1,这是一种具有抗炎和抗凋亡特性的蛋白质。此外,他们表达了高水平的三种抗癌蛋白:IL-24,TNFα相关的凋亡诱导配体和CD82。在与LPS激活的巨噬细胞共培养的系统中和在腹膜炎的小鼠模型中,球状hMSC比粘附单层培养的hMSC更有效地抑制炎症反应。此外,球形hMSC的体积约为贴壁培养的hMSC体积的四分之一。结果很明显,静脉注射后大量细胞通过肺运输。输液,并在脾,肝,肾和心脏中恢复。数据表明,对于以无菌组织损伤和未解决的炎症为特征的疾病以及对抗炎药敏感的某些癌症,球状hMSC可能比粘附培养的hMSC更有效。

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