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Evaluation of Exogenous siRNA Addition as a Metabolic Engineering Tool for Modifying Biopharmaceuticals

机译:评估外源siRNA作为修饰生物制药的代谢工程工具

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Traditional metabolic engineering approaches, including homologous recombination, zinc-finger nucleases, and short hairpin RNA, have previously been used to generate biologies with specific characteristics that improve efficacy, potency, and safety. An alternative approach is to exogenously add soluble small interfering RNA (siRNA) duplexes, formulated with a cationic lipid, directly to cells grown in shake flasks or bioreactors. This approach has the following potential advantages: no cell line development required, ability to tailor mRNA silencing by adjusting siRNA concentration, simultaneous silencing of multiple target genes, and potential temporal control of down regulation of target gene expression. In this study, we demonstrate proof of concept of the siRNA feeding approach as a metabolic engineering tool in the context of increasing monoclonal antibody (MAb) afucosylation. First, potent siRNA duplexes targeting fut8 and gmds were dosed into shake flasks with cells that express an anti-CD20 MAb. Dose response studies demonstrated the ability to titrate the silencing effect. Furthermore, siRNA addition resulted in no deleterious effects on cell growth, final protein titer, or specific productivity. In bioreactors, antibodies produced by cells following siRNA treatment exhibited improved functional characteristics compared to antibodies from untreated cells, including increased levels of afucosylation (63%), a 17-fold improvement in FCgRHIa binding, and an increase in specific cell lysis by up to 30%, as determined in an Antibody-Dependent Cellular Cytoxicity (ADCC) assay. In addition, standard purification procedures effectively cleared the exogenously added siRNA and transfection agent. Moreover, no differences were observed when other key product quality structural attributes were compared to untreated controls. These results establish that exogenous addition of siRNA represents a potentially novel metabolic engineering tool to improve biopharmaceutical function and quality that can complement existing metabolic engineering methods.
机译:传统的代谢工程方法,包括同源重组,锌指核酸酶和短发夹RNA,以前已被用于产生具有提高效率,效力和安全性的特定特征的生物。另一种方法是将由阳离子脂质配制的可溶性小分子干扰RNA(siRNA)双链体外源直接添加到摇瓶或生物反应器中生长的细胞中。这种方法具有以下潜在优势:无需开发细胞系,通过调节siRNA浓度来定制mRNA沉默的能力,同时沉默多个靶基因以及对靶基因表达下调的潜在时间控制。在这项研究中,我们证明了在增加单克隆抗体(MAb)岩藻糖基化的背景下siRNA补给方法作为代谢工程工具的概念证明。首先,将靶向fut8和gmds的有效siRNA双链体放入装有表达抗CD20 MAb的细胞的摇瓶中。剂量反应研究证明了减弱沉默作用的能力。此外,添加siRNA不会对细胞生长,最终蛋白滴度或比生产率产生有害影响。在生物反应器中,与未处理的细胞相比,siRNA处理后的细胞产生的抗体表现出改善的功能特性,包括岩藻糖基化水平提高(63%),FCgRHIa结合水平提高17倍,特异性细胞裂解提高多达20%。 30%,通过抗体依赖性细胞毒性(ADCC)分析确定。此外,标准纯化程序可有效清除外源添加的siRNA和转染剂。此外,将其他关键产品质量结构属性与未经处理的对照进行比较时,未观察到差异。这些结果证明,外源添加siRNA代表了一种潜在的新型代谢工程工具,可以改善生物制药功能和质量,从而可以补充现有的代谢工程方法。

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