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A growth factor delivery system for chondrogenic induction of infrapatellar fat pad-derived stem cells in fibrin hydrogels

机译:纤维蛋白水凝胶中软骨下脂肪垫衍生干细胞成软骨诱导的生长因子递送系统

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摘要

Articular cartilage has a limited capacity for self-renewal and repair. Tissue engineering of cartilage in vitro has been proposed as a solution to this problem; however, this approach is costly and requires a significant amount of time to grow the graft. An alternative approach is to implant chondroprogenitor cells seeded within a growth factor delivery scaffold directly into the defect site to promote tissue regeneration. The objective of this study was to develop a biocompatible growth factor delivery system capable of promoting chondrogenesis of infrapatellar fat pad (IFP)-derived stem cells. Transforming growth factor beta-1 (TGF-β1) was loaded into gelatin microspheres and incorporated into fibrin hydrogels containing IFP-derived stem cells. The release of TGF-β1 was quantified using an enzyme-linked immunosorbent assay, whereas chondrogenesis was demonstrated histologically and by quantifying sulfated glycosaminoglycan production after 21 days of in vitro culture. TGF-β1 loaded into gelatin microspheres appeared to be as effective in promoting chondrogenesis of IFP-derived stem cells as adding TGF-β1 directly to the medium. The influence of different microsphere fabrication parameters and TGF-β1 loading concentrations was also investigated but appeared to only have a small effect on subsequent chondrogenesis. The development of such growth factor delivery systems in combination with IFP-derived stem cells represents a potential new strategy for cartilage defect repair.
机译:关节软骨的自我更新和修复能力有限。已经提出了体外软骨组织工程作为该问题的解决方案。然而,这种方法成本高昂,并且需要大量时间来生长移植物。另一种方法是将植入生长因子输送支架中的软骨生成细胞直接植入缺损部位,以促进组织再生。这项研究的目的是开发一种生物相容性生长因子输送系统,该系统能够促进pat下脂肪垫(IFP)衍生干细胞的软骨形成。将转化生长因子β-1(TGF-β1)装入明胶微球中,并掺入含有IFP衍生干细胞的纤维蛋白水凝胶中。 TGF-β1的释放使用酶联免疫吸附测定进行了定量,而软骨形成在组织学上和在体外培养21天后通过量化硫酸化糖胺聚糖的产生得以证明。加载到明胶微球中的TGF-β1与直接添加TGF-β1一样有效地促进了IFP衍生干细胞的软骨形成。还研究了不同微球制备参数和TGF-β1上样浓度的影响,但似乎对随后的软骨形成影响很小。与IFP衍生的干细胞相结合的这种生长因子传递系统的发展代表了软骨缺损修复的潜在新策略。

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