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Organic/inorganic double-layered shells for multiple cytoprotection of individual living cells

机译:有机/无机双层壳,可对单个活细胞进行多重细胞保护

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The cytoprotection of individual living cells under in vitro and daily-life conditions is a prerequisite for various cell-based applications including cell therapy, cell-based sensors, regenerative medicine, and even the food industry. In this work, we use a cytocompatible two-step process to encapsulate Saccharomyces cerevisiae in a highly uniform nanometric (<100 nm) shell composed of organic poly(norepinephrine) and inorganic silica layers. The resulting cell-in-shell structure acquires multiple resistance against lytic enzyme, desiccation, and UV-C irradiation. In addition to the UV-C filtering effect of the double-layered shell, the biochemical responses of the encapsulated yeast are suggested to contribute to the observed UV-C tolerance. This work offers a chemical tool for cytoprotecting individual living cells under multiple stresses and also for studying biochemical behavior at the cellular level.
机译:体外和日常生活条件下单个活细胞的细胞保护是各种基于细胞的应用(包括细胞疗法,基于细胞的传感器,再生医学乃至食品工业)的先决条件。在这项工作中,我们使用细胞相容的两步法将啤酒酵母(Saccharomyces cerevisiae)封装在高度均匀的纳米(<100 nm)壳中,该壳由有机聚去甲肾上腺素和无机二氧化硅层组成。所得的壳中细胞结构获得了对裂解酶,干燥和UV-C辐射的多重抵抗力。除了双层壳的UV-C过滤作用外,还建议封装酵母的生物化学反应有助于观察到的UV-C耐受性。这项工作提供了一种化学工具,可以在多种压力下对单个活细胞进行细胞保护,还可以研究细胞水平上的生化行为。

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