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环境因素在调节使用骨关节炎患者髌下脂肪垫来源的干细胞构建的软骨移植物发育中的作用。

The role of environmental factors in regulating the development of cartilaginous grafts engineered using osteoarthritic human infrapatellar fat pad-derived stem cells.

机构信息

Trinity Centre for Bioengineering, Trinity Biomedical Sciences Institute, Trinity College Dublin, Dublin, Ireland.

出版信息

Tissue Eng Part A. 2012 Aug;18(15-16):1531-41. doi: 10.1089/ten.TEA.2011.0575. Epub 2012 May 31.

Abstract

Engineering functional cartilaginous grafts using stem cells isolated from osteoarthritic human tissue is of fundamental importance if autologous tissue engineering strategies are to be used in the treatment of diseased articular cartilage. It has previously been demonstrated that human infrapatellar fat pad (IFP)-derived stem cells undergo chondrogenesis in pellet culture; however, the ability of such cells to generate functional cartilaginous grafts has not been adequately addressed. The objective of this study was to explore how environmental conditions regulate the functional development of cartilaginous constructs engineered using diseased human IFP-derived stem cells (FPSCs). FPSCs were observed to display a diminished chondrogenic potential upon encapsulation in a three-dimensional hydrogel compared with pellet culture, synthesizing significantly lower levels of glycosaminoglycan and collagen on a per cell basis. To engineer more functional cartilaginous grafts, we next explored whether additional biochemical and biophysical stimulations would enhance chondrogenesis within the hydrogels. Serum stimulation was observed to partially recover the diminished chondrogenic potential within hydrogel culture. Over 42 days, stem cells that had first been expanded in a low-oxygen environment proliferated extensively on the outer surface of the hydrogel in response to serum stimulation, assembling a dense type II collagen-positive cartilaginous tissue resembling that formed in pellet culture. The application of hydrostatic pressure did not further enhance extracellular matrix synthesis within the hydrogels, but did appear to alter the spatial accumulation of extracellular matrix leading to the formation of a more compact tissue with superior mechanically functionality. Further work is required in order to recapitulate the environmental conditions present during pellet culture within scaffolds or hydrogels in order to engineer more functional cartilaginous grafts using human osteoarthritic FPSCs.

摘要

如果要将自体组织工程策略应用于治疗病变关节软骨,使用从骨关节炎患者组织中分离出来的干细胞来构建功能性软骨移植物至关重要。先前已经证明,人髌下脂肪垫(IFP)来源的干细胞在微球培养中可向软骨细胞分化;然而,尚未充分研究此类细胞生成功能性软骨移植物的能力。本研究旨在探讨环境条件如何调节使用病变人 IFP 来源干细胞(FPSCs)构建的工程化软骨构建体的功能发育。与微球培养相比,FPSCs 在三维水凝胶中包封时显示出降低的软骨分化潜力,其在每细胞基础上合成的糖胺聚糖和胶原的水平显著降低。为了构建更具功能的软骨移植物,我们接下来探讨了其他生化和生物物理刺激是否会增强水凝胶内的软骨生成。观察到血清刺激可部分恢复水凝胶培养中降低的软骨分化潜能。在 42 天内,最初在低氧环境中扩增的干细胞在血清刺激下在水凝胶的外表面上广泛增殖,组装出类似于微球培养中形成的密集型 II 型胶原阳性软骨组织。静水压力的施加并未进一步增强水凝胶内细胞外基质的合成,但似乎改变了细胞外基质的空间积累,从而形成具有更好机械功能的更致密组织。为了使用人骨关节炎 FPSCs 构建更具功能的软骨移植物,需要进一步研究以在支架或水凝胶内再现微球培养中存在的环境条件。

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