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Cell delivery systems using alginate : carrageenan hydrogel beads and fibers for regenerative medicine applications

机译:使用藻酸盐的细胞递送系统:角叉菜胶水凝胶珠和纤维,用于再生医学

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摘要

The present work was focused on the development and characterization of new hydrogel systems based on naturalorigin polymers, namely, alginate and carrageenan, into different formats and with adequate properties to sustain the viability ofencapsulated cells, envisioning their application as cell delivery vehicles for tissue regeneration. Different formulations of alginateand carrageenan hydrogels and different processing parameters were considered to determine the best conditions required toachieve the most adequate response in terms of the mechanical stability, cell viability, and functionality of the developed systems.The morphology, size, and structure of the hydrogels and their degradation behavior and mechanical properties were evaluatedduring this study. In addition to cytotoxicity studies, preliminary experiments were carried out to investigate the ability ofalginate−carrageenan beads/fibers to encapsulate chondrocytes. The results obtained indicated that the different formulations,both in the form of beads and fibers, have considerable potential as cell-carrier materials for cell delivery in tissue engineering/regenerative medicine applications.
机译:目前的工作集中在开发和表征基于天然来源的聚合物(即藻酸盐和角叉菜胶)的新型水凝胶体系,并将其表征为不同的形式,并具有足够的特性来维持被囊封的细胞的活力,并设想将其用作组织再生的细胞递送载体。考虑了藻酸盐和角叉菜胶水凝胶的不同配方和不同的加工参数,以确定在开发的系统的机械稳定性,细胞活力和功能方面实现最充分响应所需的最佳条件。水凝胶的形态,大小和结构在本研究中评估了它们的降解行为和力学性能。除细胞毒性研究外,还进行了初步实验来研究藻酸盐-角叉菜胶珠/纤维包囊软骨细胞的能力。所获得的结果表明,不同的制剂,无论是珠粒还是纤维形式,作为在组织工程/再生医学应用中用于细胞递送的细胞载体材料具有相当大的潜力。

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