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首页> 外文期刊>Biotechnology Journal: Healthcare,Nutrition,Technology >Cell-free protein synthesis of a cytotoxic cancer therapeutic: Onconase production and a just-add-water cell-free system
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Cell-free protein synthesis of a cytotoxic cancer therapeutic: Onconase production and a just-add-water cell-free system

机译:细胞毒性癌症治疗药物的无细胞蛋白质合成:Onconase生产和无水加水系统

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Biotherapeutics have many promising applications, such as anti-cancer treatments, immune suppression, and vaccines. However, due to their biological nature, some biotherapeutics can be challenging to rapidly express and screen for activity through traditional recombinant methods. For example, difficult-to-express proteins may be cytotoxic or form inclusion bodies during expression, increasing the time, labor, and difficulty of purification and downstream characterization. One potential pathway to simplify the expression and screening of such therapeutics is to utilize cell-free protein synthesis. Cell-free systems offer a compelling alternative to in vivo production, due to their open and malleable reaction environments. In this work, we demonstrate the use of cell-free systems for the expression and direct screening of the difficult-to-express cytotoxic protein onconase. Using cell-free systems, onconase can be rapidly expressed in soluble, active form. Furthermore, the open nature of the reaction environment allows for direct and immediate downstream characterization without the need of purification. Also, we report the ability of a just-add-water lyophilized cell-fee system to produce onconase. This lyophilized system remains viable after being stored above freezing for up to one year. The beneficial features of these cell-free systems make them compelling candidates for future biotherapeutic screening and production.
机译:生物疗法具有许多有希望的应用,例如抗癌治疗,免疫抑制和疫苗。但是,由于其生物学性质,某些生物治疗剂可能难以通过传统的重组方法快速表达和筛选活性。例如,难以表达的蛋白质在表达过程中可能具有细胞毒性或形成包涵体,从而增加了时间,劳动量以及纯化和下游表征的难度。简化这种治疗剂的表达和筛选的一种潜在途径是利用无细胞蛋白质合成。由于无细胞系统开放和可延展的反应环境,它提供了一种替代体内生产的引人注目的方法。在这项工作中,我们证明了使用无细胞系统来表达和直接筛选难以表达的细胞毒性蛋白onconase。使用无细胞系统,onconase可以以可溶性,活性形式快速表达。此外,反应环境的开放性使得无需纯化即可直接和立即进行下游表征。另外,我们报告了仅加水的冻干细胞费系统产生onconase的能力。该冻干系统在冰点以上保存长达一年后仍保持活力。这些无细胞系统的有益功能使其成为未来生物治疗筛选和生产的有力候选者。

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