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首页> 外文期刊>Journal of orthopaedic research >Sustained release of bioactive protein from a lyophilized tissue-engineered construct promotes the osteogenic potential of mesenchymal stem cells
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Sustained release of bioactive protein from a lyophilized tissue-engineered construct promotes the osteogenic potential of mesenchymal stem cells

机译:从冻干组织工程构建体中持续释放生物活性蛋白可促进间充质干细胞的成骨潜能

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Tissue-engineered constructs (TECs) seeded with mesenchymal stem cells (MSCs) represent a therapy for large bone defects. However, massive cell death in TECs in the early postimplantation period prompted us to investigate the osteoinductive mechanism of TECs. Previous studies demonstrated that stem cell extracts retained equivalent levels of bioactive proteins and exhibited an osteoinductive nature similar to that of intact cells. These data led us to hypothesize that despite the massive cell death in TECs, devitalized MSC-derived proteins remain on the scaffolds and are released to improve cell function. Here, TECs were prepared using demineralized bone matrix seeded with human umbilical cord Wharton's jelly-derived MSCs (hWJMSCs), and the cells seeded in TECs were devitalized by lyophilizing the TECs. Scanning electron microscopy, BCA protein assays, quantitative cytokine array analysis and immunofluorescent staining indicated that approximately 3mg/cm(3) of total protein and 49 types of cytokines derived from hWJMSCs were preserved in the lyophilized TECs (LTECs). The sustainable release of total protein and cytokines from LTECs lasted for more than 2 weeks. The released protein improved the osteogenic behavior of and gene expression in MSCs. Furthermore, the lyophilized hWJMSC-derived proteins had immunoregulatory properties similar to those of live MSCs in mixed lymphocyte reactions. Collectively, we present a novel perspective on the osteoinductive mechanism of TECs and introduce LTECs as new systems for delivering multiple cytokines to enhance MSC behavior. (c) 2015 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 34:386-394, 2016.
机译:植入间充质干细胞(MSC)的组织工程构建体(TEC)代表了一种治疗大骨缺损的方法。然而,植入后早期TEC中大量细胞死亡促使我们研究TEC的骨诱导机制。先前的研究表明,干细胞提取物保留了同等水平的生物活性蛋白,并具有与完整细胞相似的骨诱导特性。这些数据使我们假设,尽管TEC中大量细胞死亡,但失活的MSC衍生蛋白仍保留在支架上并被释放以改善细胞功能。在这里,TEC是使用接种了人脐带沃顿氏胶冻来源的MSC(hWJMSC)的去矿质骨基质制备的,并且通过冻干TEC使TEC中接种的细胞失活。扫描电子显微镜,BCA蛋白测定,定量细胞因子阵列分析和免疫荧光染色表明,冻干的TECs(LTECs)中保留了约3mg / cm(3)的总蛋白和来自hWJMSC的49种细胞因子。 LTECs总蛋白和细胞因子的可持续释放持续了2个多星期。释放的蛋白质改善了MSC的成骨行为和基因表达。此外,冻干的hWJMSC衍生蛋白在混合淋巴细胞反应中具有类似于活MSC的免疫调节特性。总的来说,我们对TECs的骨诱导机制提出了一个新的观点,并介绍了LTECs作为递送多种细胞因子来增强MSC行为的新系统。 (c)2015骨科研究学会。由Wiley Periodicals,Inc.出版J Orthop Res 34:386-394,2016。

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