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Accelerated Chondrogenic Differentiation of Human Perivascular Stem Cells with NELL-1

机译:NELL-1促进人血管周围干细胞的软骨分化

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摘要

Osteoarthritis is the leading cause of disability in the US. Consequently, there is a pressing need for restoring the structural and functional properties of diseased articular cartilage. Yet the search for the right combination of proper target cells and growth factors for cartilage regeneration remains challenging. In this study, we first tested the intrinsic chondrogenic differentiation ability of human perivascular stem cells (hPSCs), a novel source of mesenchymal stem cells (MSCs) isolated by fluorescence-activated cell sorting (FACS) from human adipose tissue. A putative prochondrogenic growth factor, NEL-like molecule-1 (NELL-1), was added to the hPSC pellets to upregulate gene expression of chondrogenic markers, including AGGRECAN, COLLAGEN II, and COMP. Furthermore, the addition of NELL-1 to a transforming growth factor beta 3 (TGF-β3) + bone morphogenetic protein-6 (BMP-6) “cocktail” resulted in the best combinatorial stimulation in accelerating the chondrogenic differentiation of hPSCs, as evidenced by increased gene and protein expression of chondrogenic markers in a shortened induction time without elevating expression of hypertrophic, fibrotic, and osteogenic markers. Mechanistically, this acceleration rendered by NELL-1 may be partially attributed to NELL-1's upregulation of BMP receptors and TGF-β receptor type I in hPSCs for increased responsiveness to BMPs + TGF-βs. In conclusion, lipoaspirate-derived hPSCs present a novel and abundant cell source of MSCs for cartilage regeneration, and the combinatorial application of NELL-1, TGF-β3, and BMP-6 with hPSCs may remarkably enhance and accelerate cartilage repair.
机译:骨关节炎是美国残疾的主要原因。因此,迫切需要恢复患病的关节软骨的结构和功能特性。然而,寻找合适的靶细胞和生长因子进行软骨再生的正确组合仍然具有挑战性。在这项研究中,我们首先测试了人血管周围干细胞(hPSC)的内在软骨分化能力,hPSCs是通过荧光激活细胞分选(FACS)从人脂肪组织中分离得到的一种新的间充质干细胞(MSCs)来源。将推定的软骨形成生长因子NEL样分子1(NELL-1)添加到hPSC沉淀中,以上调软骨形成标记物(包括AGGRECAN,COLLAGEN II和COMP)的基因表达。此外,已证明将NELL-1添加到转化生长因子β3(TGF-β3)+骨形态发生蛋白6(BMP-6)“鸡尾酒”中可产生最佳组合刺激,从而促进hPSC的软骨形成分化通过在较短的诱导时间内增加软骨生成标记的基因和蛋白质表达而不会增加肥大,纤维化和成骨标记的表达。从机制上讲,NELL-1的这种加速作用可能部分归因于hPSC中BELL受体和I型TGF-β受体的NELL-1上调,从而增强了对BMPs +TGF-β的反应性。总之,源自脂肪抽吸物的hPSCs为软骨再生提供了一种新颖且丰富的MSCs细胞来源,NELL-1,TGF-β3和BMP-6与hPSCs的组合应用可显着增强并加速软骨修复。

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