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首页> 外文期刊>Stem cells international >Preconditioning of Rat Bone Marrow-Derived Mesenchymal Stromal Cells with Toll-Like Receptor Agonists
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Preconditioning of Rat Bone Marrow-Derived Mesenchymal Stromal Cells with Toll-Like Receptor Agonists

机译:大鼠骨髓衍生的间充质基质细胞与达洛状受体激动剂的预处理

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摘要

Bone marrow-derived mesenchymal stromal cells (BM-MSCs) are dynamic cells that can sense the environment, adapting their regulatory functions to different conditions. Accordingly, the therapeutic potential of BM-MSCs can be modulated by preconditioning strategies aimed at modifying their paracrine action. Although rat BM-MSCs (rBM-MSCs) have been widely tested in preclinical research, most preconditioning studies have employed human and mouse BM-MSCs. Herein, we investigated whether rBM-MSCs modify their phenotype and paracrine functions in response to Toll-like receptor (TLR) agonists. The data showed that rBM-MSCs expressed TLR3, TLR4, and MDA5 mRNA and were able to internalize polyinosinic-polycytidylic acid (Poly(I:C)), a TLR3/MDA5 agonist. rBM-MSCs were then stimulated with Poly(I:C) or with lipopolysaccharide (LPS, a TLR4 agonist) for 1?h and were grown under normal culture conditions. LPS or Poly(I:C) stimulation did not affect the viability or the morphology of rBM-MSCs and did not modify the expression pattern of key cell surface markers. Poly(I:C) did not induce statistically significant changes in the release of several inflammatory mediators and VEGF by rBM-MSCs, although it tended to increase IL-6 and MCP-1 secretion, whereas LPS increased the release of IL-6, MCP-1, and VEGF, three factors that were constitutively secreted by unstimulated cells. The neurotrophic activity of the conditioned medium from unstimulated and LPS-preconditioned rBM-MSCs was investigated using dorsal root ganglion explants, showing that soluble factors produced by unstimulated and LPS-preconditioned rBM-MSCs can stimulate neurite outgrowth similarly, in a VEGF-dependent manner. LPS-preconditioned cells, however, were slightly more efficient in increasing the number of regrowing axons in a model of sciatic nerve transection in rats. In conclusion, LPS preconditioning boosted the production of constitutively secreted factors by rBM-MSCs, without changing their mesenchymal identity, an effect that requires further investigation in exploratory preclinical studies.
机译:骨髓衍生的间充质基质细胞(BM-MSCs)是可以感知环境的动态细胞,使其监管功能适应不同的条件。因此,BM-MSC的治疗潜力可以通过针对旨在改变其旁静脉作用的预处理策略来调节。虽然大鼠BM-MSCs(RBM-MSCs)已被广泛测试在临床前研究中,但大多数预处理研究都采用了人和小鼠BM-MSCs。在此,我们研究了RBM-MSCs是否响应于Toll样受体(TLR)激动剂修饰其表型和旁静脉功能。数据显示RBM-MSCs表达TLR3,TLR4和MDA5 mRNA,并且能够内化多胞聚环酸(Poly(I:C)),一种TLR3 / MDA5激动剂。然后用聚(I:C)或用脂多糖(LPS,TLR4激动剂)刺激RBM-MSCs,以1〜H,并在正常培养条件下生长。 LPS或Poly(I:C)刺激不会影响RBM-MSCs的活力或形态,并且没有修改关键细胞表面标记的表达模式。 Poly(I:C)在RBM-MSCs的释放中没有诱导统计学上显着的变化,虽然它趋于增加IL-6和MCP-1分泌,而LPS增加了IL-6的释放, MCP-1和VEGF,由未刺激细胞分泌的三个因素。使用背根神经节省植体研究了来自未刺激和LPS-预处理的RBM-MSCs的条件培养基的神经营养活性,表明通过未刺激和LPS-预处理的RBM-MSC产生的可溶性因子可以以VEGF依赖性方式刺激神经突多生长。 。然而,在提高大鼠坐骨神经趋化模型中的重生轴突的数量方面,LPS-预处理细胞略有效率。总之,LPS预处理通过RBM-MSCs增强了组成型分泌因子的产生,而不会改变其间充质标识,这是需要进一步调查探索性临床前研究的效果。

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