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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Enhanced multi-lineage differentiation of human mesenchymal stem/stromal cells within poly(N-isopropylacrylamide-acrylic acid) microgel-formed three-dimensional constructs
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Enhanced multi-lineage differentiation of human mesenchymal stem/stromal cells within poly(N-isopropylacrylamide-acrylic acid) microgel-formed three-dimensional constructs

机译:在聚(N-异丙基丙烯酰胺 - 丙烯酸)微凝胶形成的三维构建中,增强人间充质茎/基质细胞的多谱分化

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摘要

Human mesenchymal stem/stromal cells (hMSCs) are a potential cell source of stem cell therapy for many serious diseases and hMSC spheroids have emerged to replace single cell suspensions for cell therapy. Three-dimensional (3D) scaffolds or hydrogels which can mimic properties of the extracellular matrix (ECM) have been widely explored for their application in tissue regeneration. However, there are considerably less studies on inducing differentiation of hMSC spheroids using 3D scaffolds or hydrogels. This study is the first to explore multi-lineage differentiation of a stem cell line and primary stem cells within poly(N-isopropylacrylamide) (p(NIPAAm))-based thermosensitive microgel-formed constructs. We first demonstrated that poly(N-isopropylacrylamide-co-acrylic acid) (p(NIPAAm-AA)) was not toxic to hMSCs and the microgel-formed constructs facilitated formation of uniform stem cell spheroids. Due to functional enhancement of cell spheroids, hMSCs within the 3D microgel-formed constructs were induced for multi-lineage differentiation as evidenced by significant up-regulation of messenger RNA (mRNA) expression of chondrogenic and osteogenic genes even in the absence of induction media on day 9. When induction media were in situ supplied on day 9, mRNA expression of chondrogenic, osteogenic and adipogenic genes within the microgel-formed constructs were significantly higher than that in the pellet and 2D cultures, respectively, on day 37. In addition, histological and immunofluorescent images also confirmed successful multi-lineage differentiation of hMSCs within the 3D microgel-formed constructs. Hence, the thermosensitive p(NIPAAm-AA) microgel can be potentially used in an in vitro model for cell differentiation or in vivo transplantation of pre-differentiated human mesenchymal stromal cells into patients for specific lineage differentiation.
机译:人的间充质茎/基质细胞(HMSCs)是对许多严重疾病的干细胞疗法的潜在细胞来源,HMSC球体已经出现替代单细胞悬浮液以用于细胞疗法。已经广泛探索了可以模仿细胞外基质(ECM)性质的三维(3D)支架或水凝胶,以探索其在组织再生中的应用。然而,有关使用3D支架或水凝胶诱导HMSC球状体的分化的研究。本研究是第一个探讨聚(N-异丙基亚丙烯酰胺)(P(NIPAAM))的热敏微凝胶形成的构建体内的干细胞系和初级干细胞的多谱系分化。我们首先证明了聚(N-异丙基丙烯酰胺 - 共丙烯酸)(P(NIPAAM-AA))对HMSC无毒,并且微凝胶形成的构建体促进形成均匀的干细胞球体。由于细胞球体的功能增强,诱导3D微凝胶形成构建体内的HMSCs用于多谱分化,这证明了甚至在没有感应培养基的情况下的脑内心绞痛和成骨基因的表达的显着上调第9天。当感应培养基在第9天提供时,在第37天分别在微凝胶形成构建体内的软骨内,骨质发生和脂肪基因的MRNA表达显着高于颗粒和2D培养物中的。此外,组织学和免疫荧光图像还确认了3D微凝胶形成的构造内的HMSC的成功多谱分化。因此,热敏P(NIPAAM-AA)微凝胶可以在细胞分化的体外模型中或者在患者中的细胞分化或体内移植到特异性谱系分化中。

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