首页> 外文期刊>Biomaterials >Sb203580 preconditioning recharges matrix-expanded human adult stem cells for chondrogenesis in an inflammatory environment - A feasible approach for autologous stem cell based osteoarthritic cartilage repair
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Sb203580 preconditioning recharges matrix-expanded human adult stem cells for chondrogenesis in an inflammatory environment - A feasible approach for autologous stem cell based osteoarthritic cartilage repair

机译:SB203580预处理对炎性环境中的软骨发生的基质扩增的人成人干细胞 - 一种可行的自体干细胞骨关节炎软骨修复方法

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摘要

utologous stem cells are a promising cell source for cartilage regeneration; however, cell replicative senescence and joint posttraumatic inflammation provide challenges in bringing this treatment modality to fruition. In this study, we hypothesized that preconditioning with p38 MAPK inhibitor (sb203580) would recharge decellularized extracellular matrix (dECM) expanded human synovium-derived stem cell (hSDSC) chondrogenesis in an inflammatory environment. We found that preconditioning with sb203580 greatly enhanced dECM expanded hSDSC proliferation and chondrogenic potential while supplementation with sb203580 in an induction medium dramatically retarded hSDSC chondrogenic differentiation, even for dECM expanded cells. We also found that sb203580 preconditioning enhanced matrix-expanded hSDSC chondrogenic capacity even in an interleukin-1 (IL-1) induced inflammatory environment. Non-detectable expression of HLA-DR in the hSDSCs grown on allogeneic dECM indicates the feasibility of commercial preparation of these dECMs from healthy, young donors for patients who need autologous transplantation. Our study indicated that p38 MAPK inhibitor has a distinctive priming effect on dECM mediated stem cell cartilage regeneration. Combined rejuvenation with sb203580 and dECM expansion can precondition hSDSCs' resurfacing capacity for osteoarthritic patients with cartilage defects.
机译:Utololous干细胞是软骨再生的有希望的细胞来源;然而,细胞复制衰老和联合前颌骨炎症在将这种治疗方式与成果中带来挑战提供挑战。在该研究中,我们假设用P38 MAPK抑制剂(SB203580)的预处理将在炎性环境中为脱细胞化细胞外基质(DECM)扩增的人类臂衍生的干细胞(HSDSC)软骨发生。我们发现,使用SB203580的预处理大大增强了DECM扩增的HSDSC增殖和软骨内电位,同时补充在感应培养基中的SB203580显着延迟了HSDSC软骨菌分化,即使对于DECM膨胀细胞也是如此。我们还发现,即使在白细胞介素-1(IL-1)诱导的炎症环境中,SB203580预处理增强的基质膨胀的HSDSC软骨内容能力。在同种异体DECM上生长的HSDSC中HLA-DR的无可检测到的表达表明,对于需要自体移植的患者,这些DECMS的商业制备的可行性。我们的研究表明,P38 MAPK抑制剂对DECM介导的干细胞软骨再生具有独特的引发效果。综合复兴与SB203580和DECM扩展可以预处理HSDSCS对软骨缺陷骨质缺陷患者的重新铺设能力。

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