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Crosstalk between Substrates and Rho-Associated Kinase Inhibitors in Cryopreservation of Tissue-Engineered Constructs

机译:基质和rho相关激酶抑制剂之间的串扰在组织工程构建体中的冷冻保存中

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摘要

It is documented that human mesenchymal stem cells (hMSCs) can be differentiated into various types of cells to present a tool for tissue engineering and regenerative medicine. Thus, the preservation of stem cells is a crucial factor for their effective long-term storage that further facilitates their continuous supply and transportation for application in regenerative medicine. Cryopreservation is the most important, practicable, and the only established mechanism for long-term preservation of cells, tissues, and organs, and engineered tissues; thus, it is the key step for the improvement of tissue engineering. A significant portion of MSCs loses cellular viability while freeze-thawing, which represents an important technical limitation to achieving sufficient viable cell numbers for maximum efficacy. Several natural and synthetic materials are extensively used as substrates for tissue engineering constructs and cryopreservation because they promote cell attachment and proliferation. Rho-associated kinase (ROCK) inhibitors can improve the physiological function and postthaw viability of cryopreserved MSCs. This review proposes a crosstalk between substrate topology and interaction of cells with ROCK inhibitors. It is shown that incorporation of ionic nanoparticles in the presence of an external electrical field improves the generation of ROCK inhibitors to safeguard cellular viability for the enhanced cryopreservation of engineered tissues.
机译:记录了人间充质干细胞(HMSCs)可以分化成各种类型的细胞,以提出组织工程和再生医学的工具。因此,干细胞的保存是其有效长期储存的关键因素,进一步促进其在再生医学中应用的连续供应和运输。冷冻保存是最重要的,切实可行的,是长期保存细胞,组织和器官和工厂组织的唯一建立机制;因此,它是改善组织工程的关键步骤。 MSC的重要部分在冻融时失去了细胞活力,这代表了实现足够的活性细胞数以获得最大功效的重要技术限制。几种天然和合成材料广泛用作组织工程构建和冷冻保存的基材,因为它们促进了细胞附着和增殖。 RHO相关激酶(岩)抑制剂可以改善冷冻保存MSCs的生理功能和后三锯存活率。该综述提出了岩体拓扑和岩石抑制剂细胞相互作用之间的串扰。结果表明,在外部电场存在下掺入离子纳米颗粒改善了岩石抑制剂的产生,以保护用于增强工程组织的增强的冷冻保存的细胞活力。

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