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Cell-matrix Interactions of Factor IX (FIX)-engineered human mesenchymal stromal cells encapsulated in RGD-alginate vs. Fibrinogen-alginate microcapsules

机译:因子IX(FIX)工程化的人间充质基质细胞在RGD-藻酸盐与纤维蛋白原-藻酸盐微胶囊中的细胞基质相互作用

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The success of cell microencapsulation technology in tissue engineering and protein delivery applications depends on the viability and functionality of the encapsulated cells, which in turn are dependent upon cell/matrix interactions. In this work, we compared the viability of cord blood-derived mesenchymal stromal cells (CB MSCs), engineered to secrete factor IX (FIX) for hemophilia treatment, and encapsulated in arginine-glycine-aspartate (RGD)-alginate versus fibrinogen-alginate microcapsules. We evaluated the effect of the biomimetic matrix on cell attachment, proliferation, and secretion of FIX. Compared with nonsupplemented alginate matrix, RGD-alginate significantly enhanced the viability of the encapsulated MSCs. Further, cells in RGD-alginate displayed distinct attachment morphology, thus suggesting that RGD-alginate can potentially be used for the encapsulation of MSCs in tissue engineering applications that require enhanced cell attachment and viability. However, our data also showed that RGD-alginate microcapsules, in contrast to fibrinogen-alginate microcapsules, did not significantly improve cell proliferation of or FIX secretion by encapsulated MSCs. Our findings suggest that evidence of cell attachment alone may not accurately predict the functionality of cells in biomimetic microcapsules.
机译:细胞微囊化技术在组织工程和蛋白质递送应用中的成功取决于被囊化细胞的生存能力和功能,而后者又取决于细胞/基质的相互作用。在这项工作中,我们比较了脐血来源的间充质基质细胞(CB MSCs),经工程改造以分泌IX(FIX)进行血友病治疗,并封装在精氨酸-甘氨酸-天冬氨酸(RGD)-藻酸盐与纤维蛋白原-藻酸盐中的生存力微胶囊。我们评估了仿生基质对细胞附着,增殖和FIX分泌的影响。与未补充的藻酸盐基质相比,RGD-藻酸盐显着增强了包封的MSC的生存能力。此外,RGD-藻酸盐中的细胞显示出独特的附着形态,因此表明RGD-藻酸盐可潜在地用于组织工程应用中要求增强细胞附着和生存能力的MSC封装。但是,我们的数据还显示,与纤维蛋白原-藻酸盐微胶囊相比,RGD-藻酸盐微胶囊并未显着改善胶囊化MSC的细胞增殖或FIX分泌。我们的发现表明,仅细胞附着的证据可能无法准确预测仿生微胶囊中细胞的功能。

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