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Controlled Delivery of Human Cells by Temperature Responsive Microcapsules

机译:温度响应性微胶囊控制人细胞的递送

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摘要

Cell therapy is one of the most promising areas within regenerative medicine. However, its full potential is limited by the rapid loss of introduced therapeutic cells before their full effects can be exploited, due in part to anoikis, and in part to the adverse environments often found within the pathologic tissues that the cells have been grafted into. Encapsulation of individual cells has been proposed as a means of increasing cell viability. In this study, we developed a facile, high throughput method for creating temperature responsive microcapsules comprising agarose, gelatin and fibrinogen for delivery and subsequent controlled release of cells. We verified the hypothesis that composite capsules combining agarose and gelatin, which possess different phase transition temperatures from solid to liquid, facilitated the destabilization of the capsules for cell release. Cell encapsulation and controlled release was demonstrated using human fibroblasts as model cells, as well as a therapeutically relevant cell line—human umbilical vein endothelial cells (HUVECs). While such temperature responsive cell microcapsules promise effective, controlled release of potential therapeutic cells at physiological temperatures, further work will be needed to augment the composition of the microcapsules and optimize the numbers of cells per capsule prior to clinical evaluation.
机译:细胞疗法是再生医学中最有前途的领域之一。然而,其全部潜力受到引入的治疗细胞在其充分发挥作用之前迅速丧失的局限性,这部分归因于神经衰弱,部分归因于细胞已移植到病理组织中的不良环境。已经提出封装单个细胞作为增加细胞生存力的手段。在这项研究中,我们开发了一种简便,高通量的方法,用于创建温度敏感的微胶囊,其中包括琼脂糖,明胶和纤维蛋白原,用于递送和随后控制释放细胞。我们验证了假说,即琼脂糖和明胶相结合的复合胶囊具有从固体到液体的不同相变温度,从而促进了胶囊释放细胞的不稳定作用。使用人成纤维细胞作为模型细胞,以及与治疗相关的细胞系-人脐静脉内皮细胞(HUVEC),证明了细胞包封和控释。尽管这样的温度响应性细胞微胶囊有望在生理温度下有效地控制释放潜在治疗性细胞,但在临床评估之前,还需要进一步的工作来增加微胶囊的组成并优化每个胶囊的细胞数量。

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