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Multipotent stromal cells/mesenchymal stem cells and fibroblasts combine to minimize skin hypertrophic scarring

机译:多能干基质细胞/间充质干细胞与成纤维细胞相结合,可最大程度地减少皮肤增生性瘢痕形成

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Background Transplantation of mesenchymal stem cells (MSC) has been proposed to improve wound healing. However, as these cells only transiently survive in the implantation site, the mechanisms underlying this beneficial healing response are associated with restorative paracrine effects of MSC matricellular factors on resident stromal cells. However, this requires that the recipient has a robust reservoir of viable cells. Here, we examine the influence of MSCs on the behavior of cotransplanted fibroblasts, in a manner to provide augmented cellular reserve to debilitated individuals, specifically focusing on matrix remodeling following in-vivo wounding. Methods Using a Hylan-A dermal filler hydrogel containing collagen I and tenascin-C for delivery and increased survival of transplanted cells, we find that cotransplantation of MSCs with fibroblasts reduces scarring. Results Transplanted xenogeneic MSCs augmented fibroblast proliferation, migration, and extracellular matrix deposition critical for wound closure, and reduced inflammation following wounding. MSCs also corrected matrix remodeling by CXCR3-deficient fibroblasts which otherwise led to hypertrophic scarring. This effect was superior to MSC or fibroblast transplantation alone. Conclusions Taken together, these data suggest that MSCs, even if eventually rejected, transplanted with fibroblasts normalize matrix regeneration during healing. The current study provides insight into cellular therapies as a viable method for antifibrotic treatment and demonstrates that even transiently engrafted cells can have a long-term impact via matrix modulation and education of other tissue cells.
机译:背景已经提出了间充质干细胞(MSC)的移植以改善伤口愈合。但是,由于这些细胞仅在植入位点短暂存活,因此这种有益的愈合反应所依据的机制与MSC基质细胞因子对常驻基质细胞的恢复旁分泌作用有关。然而,这要求接受者具有健壮的活细胞库。在这里,我们检查了MSCs对共移植的成纤维细胞行为的影响,以向衰弱的个体提供增强的细胞储备的方式,特别关注体内受伤后的基质重塑。方法使用含有胶原蛋白I和腱生蛋白C的Hylan-A真皮填充水凝胶来递送和增加移植细胞的存活率,我们发现MSC与成纤维细胞的共移植可减少瘢痕形成。结果异种间质干细胞移植增强了成纤维细胞的增殖,迁移和细胞外基质沉积,这对于伤口闭合至关重要,并减少了伤口后的炎症。 MSC还纠正了CXCR3缺陷成纤维细胞对基质的重塑,否则会导致肥大性瘢痕形成。此效果优于单独的MSC或成纤维细胞移植。结论综上所述,这些数据表明,即使最终被拒绝,移植成纤维细胞的MSC也可以使愈合过程中的基质再生正常化。当前的研究提供了对细胞疗法作为抗纤维化治疗的可行方法的深刻见解,并证明即使是短暂移植的细胞也可以通过基质调节和其他组织细胞的教育而具有长期影响。

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