首页> 美国卫生研究院文献>Bioengineering Translational Medicine >Encapsulation of mesenchymal stem cells in glycosaminoglycans‐chitosan polyelectrolyte microcapsules using electrospraying technique: Investigating capsule morphology and cell viability
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Encapsulation of mesenchymal stem cells in glycosaminoglycans‐chitosan polyelectrolyte microcapsules using electrospraying technique: Investigating capsule morphology and cell viability

机译:使用电喷雾技术将间充质干细胞包裹在糖胺聚糖-壳聚糖聚电解质微胶囊中:研究胶囊的形态和细胞活力

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摘要

Polyelectrolyte microcapsules are modular constructs which facilitate cell handling and assembly of cell‐based tissue constructs. In this study, an electrospray (ES) encapsulation apparatus was developed for the encapsulation of mesenchymal stem cells (MSCs). Ionic complexation between glycosaminoglycans (GAGs) and chitosan formed a polyelectrolyte complex membrane at the interface. To optimize the capsules, the effect of voltage, needle size and GAG formulation on capsule size were investigated. It was observed that by increasing the voltage and decreasing the needle size, the capsule size would decrease but at voltages above 12 kV, capsule size distribution broadened significantly which yields lower circularity. Increase in GAG viscosity resulted in larger microcapsules and cell viability exhibited no significant changes during the encapsulation procedure. These results suggest that ES is a highly efficient, and scalable approach to the encapsulation of MSCs for subsequent use in bioprinting and other modular tissue engineering or regenerative medicine applications.
机译:聚电解质微胶囊是模块化构建体,可促进细胞处理和基于细胞的组织构建体的组装。在这项研究中,开发了一种电喷雾(ES)封装设备,用于封装间充质干细胞(MSC)。糖胺聚糖(GAG)与壳聚糖之间的离子络合在界面处形成了聚电解质络合物膜。为了优化胶囊,研究了电压,针头大小和GAG配方对胶囊大小的影响。观察到,通过增加电压并减小针头尺寸,胶囊的尺寸将减小,但是在高于12 kV的电压下,胶囊尺寸的分布显着加宽,从而产生较低的圆形度。 GAG粘度的增加导致更大的微胶囊,并且在封装过程中细胞活力未显示出明显变化。这些结果表明,ES是一种高效,可扩展的MSC封装方法,可用于随后的生物打印和其他模块化组织工程或再生医学应用。

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