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Synthesis and Biological Evaluation of Antibody Drug Conjugates Based on an Antibody Expression System: Conamax

机译:基于抗体表达系统Conamax的抗体药物缀合物的合成和生物学评估

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Antibody production for ADCs (or in general) is commonly performed by CHO-based platforms and limited by volumetric productivity, expensive downstream purification, and extended optimization timelines. The Conamax platform is a novel microbial-based protein production and secretion system. A suite of synthetic biology tools have enabled high volumetric productivity (>1 g/L/d) and glycoengineering to produce simple and consistent human-like post-translational modifications. Conamax can be engineered to secrete genuine, functional monoclonal antibodies that have been successfully used to make antibody drug conjugates (ADCs) via cysteine-linked conjugation. Specifically, we evaluated ADCs derived from both a Conamax-produced anti-HER2 antibody and comparable commercially sourced Chinese hamster ovary (CHO)-produced material in an NCI-N87 gastric cancer xenograft model. Conjugation efficiency and resulting analytical data indicated comparable ADC quality and attributes. No statistical difference was observed between Conamax- and CHO-derived test articles thereby indicating similar efficacy and function. These results further demonstrate the potential of Conamax as a useful platform for the discovery and production of therapeutic antibodies and ADCs.
机译:ADC的抗体生产(或一般而言)通常由基于CHO的平台完成,并受到体积生产率,昂贵的下游纯化和延长的优化时间表的限制。 Conamax平台是一种新型的基于微生物的蛋白质生产和分泌系统。一套合成生物学工具已使高容积生产率(> 1 g / L / d)和糖工程技术能够产生简单且一致的类似于人的翻译后修饰。 Conamax可以经过工程设计以分泌真正的功能性单克隆抗体,该抗体已成功地用于通过半胱氨酸连接的缀合物制备抗体药物缀合物(ADC)。具体而言,我们在NCI-N87胃癌异种移植模型中评估了衍生自Conamax生产的抗HER2抗体和可比较的商业来源的中国仓鼠卵巢(CHO)生产的材料的ADC。共轭效率和产生的分析数据表明ADC的质量和特性相当。在Conamax和CHO衍生的测试物品之间未观察到统计学差异,从而表明相似的功效和功能。这些结果进一步证明了Conamax作为发现和生产治疗性抗体和ADC的有用平台的潜力。

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