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Bottom-up engineering of cell-laden hydrogel microfibrous patch for guided tissue regeneration

机译:用于引导组织再生的细胞升水凝胶微纤维贴片的自下而上的工程

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The development of three-dimensional (3D) fibrous networks as platforms for tissue engineering applications has been attracting considerable attention. Opportunely arranged microscaled fibers offer an appealing biomimetic 3D architecture, with an open porous structure and a high surface-to-volume ratio. The present work describes the development of modified-alginate hydrogel microfibers for cell entrapment, using a purpose-designed flow circuit. For microfibers biofabrication, cells were suspended in gel-precursor alginate solution and injected in a closed-loop circuit with circulating cross-linking solution. The flow promoted stretching and solidification of continuous cell-loaded micro-scaled fibers that were collected in a strainer, assembling into a microfibrous patch. The process was optimized to allow obtaining a self-standing cohesive structure. After characterization of the microfibrous patch, the behavior of embedded human mesenchymal stem cells (hMSCs) was evaluated. Microfibers of oxidized alginate modified with integrin-binding ligands provided a suitable 3D cellular micro environment, supporting hMSCs survival and stimulating the production of endogenous extracellular matrix proteins, such as fibronectin and collagen Type I. Collectively, these features make the proposed microfibrous structures stand out as promising 3D scaffolds for regenerative medicine.
机译:三维(3D)纤维网络作为组织工程应用的平台的发展一直吸引了相当大的关注。适当地安排的微观纤维提供一种吸引人的仿生3D架构,具有开放的多孔结构和高度的体积比。本作者使用目的设计的流动电路描述了用于细胞夹紧的改性藻酸盐水凝胶微纤维的显影。对于微纤维生物制备,细胞悬浮在凝胶 - 前体藻酸盐溶液中,并在具有循环交联溶液的闭环电路中注射。流动促进了在过滤器中收集的连续细胞负载的微鳞纤维的拉伸和凝固,组装成微纤维贴剂。该过程经过优化,以允许获得自立的粘性结构。在微纤维贴剂表征后,评价嵌入式人间充质干细胞(HMSCs)的行为。用整联蛋白结合配体改性的氧化藻酸盐的微纤维提供了合适的3D细胞微环境,支持HMSCs存活和刺激内源性细胞外基质蛋白的生产,例如纤连蛋白和胶原蛋白类型。总的来说,这些特征使得提出的微纤维结构脱颖而出作为具有再生医学的有前途的3D支架。

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