首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Comparative Analysis between the In Vivo Biodistribution and Therapeutic Efficacy of Adipose-Derived Mesenchymal Stromal Cells Administered Intraperitoneally in Experimental Colitis
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Comparative Analysis between the In Vivo Biodistribution and Therapeutic Efficacy of Adipose-Derived Mesenchymal Stromal Cells Administered Intraperitoneally in Experimental Colitis

机译:实验性结肠炎腹膜内施用脂肪来源的间质基质细胞的体内生物分布和治疗功效的比较分析

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摘要

Mesenchymal stem cells (MSCs) have emerged as a promising treatment for inflammatory diseases. The immunomodulatory effect of MSCs takes place both by direct cell-to-cell contact and by means of soluble factors that leads to an increased accumulation of regulatory immune cells at the sites of inflammation. Similar efficacy of MSCs has been described regardless of the route of administration used, the inflammation conditions and the major histocompatibility complex context. These observations raise the question of whether the migration of the MSCs to the inflamed tissues is a pre-requisite to achieve their beneficial effect. To address this, we examined the biodistribution and the efficacy of intraperitoneal luciferase-expressing human expanded adipose-derived stem cells (Luci-eASCs) in a mouse model of colitis. Luci-eASC-infused mice were stratified according to their response to the Luci-eASC treatment. According to the stratification criteria, there was a tendency to increase the bioluminescence signal in the intestine at the expense of a decrease in the bioluminescence signal in the liver in the “responder” mice. These data thus suggest that the accumulation of the eASCs to the inflamed tissues is beneficial for achieving an optimal modulation of inflammation.
机译:间充质干细胞(MSCs)已经出现作为炎性疾病的有前途的治疗方法。 MSC的免疫调节作用通过直接的细胞间接触以及通过可溶性因子而发生,所述可溶性因子导致调节性免疫细胞在炎症部位的积累增加。不论使用何种给药途径,炎症条件和主要组织相容性复杂情况,均已描述了MSC的相似功效。这些观察提出了以下问题:MSC是否迁移到发炎的组织是否是获得其有益效果的先决条件。为了解决这个问题,我们检查了结肠炎的小鼠模型中表达腹膜内萤光素酶的人扩增的脂肪衍生干细胞(Luci-eASCs)的生物分布和功效。根据对Luci-eASC治疗的反应将注入Luci-eASC的小鼠分层。根据分层标准,在“响应者”小鼠中,存在增加肠道中生物发光信号的趋势,但以降低肝脏中生物发光信号为代价的趋势。因此,这些数据表明,eASCs在发炎组织中的积累有利于实现炎症的最佳调节。

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