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Conditioned Medium from Bone Marrow-Derived Mesenchymal Stem Cells Improves Recovery after Spinal Cord Injury in Rats: An Original Strategy to Avoid Cell Transplantation

机译:来自骨髓间充质干细胞的条件培养基可改善大鼠脊髓损伤后的恢复:避免细胞移植的原始策略

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摘要

Spinal cord injury triggers irreversible loss of motor and sensory functions. Numerous strategies aiming at repairing the injured spinal cord have been studied. Among them, the use of bone marrow-derived mesenchymal stem cells (BMSCs) is promising. Indeed, these cells possess interesting properties to modulate CNS environment and allow axon regeneration and functional recovery. Unfortunately, BMSC survival and differentiation within the host spinal cord remain poor, and these cells have been found to have various adverse effects when grafted in other pathological contexts. Moreover, paracrine-mediated actions have been proposed to explain the beneficial effects of BMSC transplantation after spinal cord injury. We thus decided to deliver BMSC-released factors to spinal cord injured rats and to study, in parallel, their properties in vitro. We show that, in vitro, BMSC-conditioned medium (BMSC-CM) protects neurons from apoptosis, activates macrophages and is pro-angiogenic. In vivo, BMSC-CM administered after spinal cord contusion improves motor recovery. Histological analysis confirms the pro-angiogenic action of BMSC-CM, as well as a tissue protection effect. Finally, the characterization of BMSC-CM by cytokine array and ELISA identified trophic factors as well as cytokines likely involved in the beneficial observed effects. In conclusion, our results support the paracrine-mediated mode of action of BMSCs and raise the possibility to develop a cell-free therapeutic approach.
机译:脊髓损伤引发不可逆的运动和感觉功能丧失。已经研究了许多旨在修复受损脊髓的策略。其中,骨髓来源的间充质干细胞(BMSCs)的使用是有前途的。确实,这些细胞具有调节CNS环境并允许轴突再生和功能恢复的有趣特性。不幸的是,宿主骨髓内的骨髓间充质干细胞的存活和分化仍然很差,并且在其他病理情况下移植时发现这些细胞具有多种不良作用。此外,已提出旁分泌介导的作用来解释脊髓损伤后BMSC移植的有益作用。因此,我们决定将BMSC释放的因子传递给脊髓损伤的大鼠,并平行研究其体外特性。我们显示,在体外,BMSC条件培养基(BMSC-CM)保护神经元免于凋亡,激活巨噬细胞并促血管生成。在体内,脊髓挫伤后给予BMSC-CM可改善运动恢复。组织学分析证实了BMSC-CM的促血管生成作用以及组织保护作用。最后,通过细胞因子阵列和ELISA对BMSC-CM进行鉴定,鉴定了营养因子以及可能参与有益观察效果的细胞因子。总之,我们的研究结果支持了旁分泌介导的BMSC的作用方式,并提高了开发无细胞治疗方法的可能性。

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