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Pre-activation of mesenchymal stem cells with TNF-α IL-1β and nitric oxide enhances its paracrine effects on radiation-induced intestinal injury

机译:TNF-αIL-1β和一氧化氮对间充质干细胞的预激活增强了其旁分泌对放射线致肠损伤的作用

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摘要

Conditioned medium from mesenchymal stem cells (MSC-CM) may represent a promising alternative to MSCs transplantation, however, the low concentrations of growth factors in non-activated MSC-CM hamper its clinical application. Recent data indicated that the paracrine potential of MSCs could be enhanced by inflammatory factors. Herein, we pre-activated bone-marrow-derived MSCs under radiation-induced inflammatory condition (MSCIEC-6(IR)) and investigated the evidence and mechanism for the differential effects of MSC-CMIEC-6(IR) and non-activated MSC-CM on radiation-induced intestinal injury (RIII). Systemic infusion of MSC-CMIEC-6(IR), but not non-activated MSC-CM, dramatically improved intestinal damage and survival of irradiated rats. Such benefits may involve the modulation of epithelial regeneration and inflammation, as indicated by the regeneration of intestinal epithelial/stem cells, the regulation of the pro-/anti-inflammatory cytokine balance. The mechanism for the superior paracrine efficacy of MSCIEC-6(IR) is related to a higher secretion of regenerative, immunomodulatory and trafficking molecules, including the pivotal factor IGF-1, induced by TNF-α, IL-1β and nitric oxide partially via a heme oxygenase-1 dependent mechanism. Together, our findings suggest that pre-activation of MSCs with TNF-α, IL-1β and nitric oxide enhances its paracine effects on RIII via a heme oxygenase-1 dependent mechanism, which may help us to maximize the paracrine potential of MSCs.
机译:间充质干细胞(MSC-CM)的条件培养基可能代表了MSC移植的有希望的替代方法,但是,非活化MSC-CM中低浓度的生长因子阻碍了其临床应用。最近的数据表明,炎症因子可以增强MSC的旁分泌潜能。在此,我们在辐射诱导的炎症条件下(MSC IEC-6(IR))预激活了骨髓来源的MSC,并研究了MSC-CM IEC-6(IR)和未激活的MSC-CM对放射线致肠损伤(RIII)的影响。全身输注MSC-CM IEC-6(IR)而非非激活的MSC-CM可以显着改善辐照大鼠的肠道损伤和存活。这样的益处可能涉及上皮再生和炎症的调节,如肠上皮/干细胞的再生所表明的,调节促炎/抗炎细胞因子的平衡。 MSC IEC-6(IR)具有更好的旁分泌功效的机制与TNF-α诱导的再生,免疫调节和运输分子(包括关键因子IGF-1)的更高分泌有关, IL-1β和一氧化氮部分通过血红素加氧酶-1依赖性机制。总之,我们的发现表明,通过TNF-α,IL-1β和一氧化氮对MSC的预激活通过血红素加氧酶-1依赖性机制增强了其对RIII的副杀伤作用,这可能有助于我们最大化MSC的旁分泌潜力。

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