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From hybridomas to a robust microalgal-based production platform: molecular design of a diatom secreting monoclonal antibodies directed against the Marburg virus nucleoprotein

机译:从杂交瘤到强大的基于微藻的生产平台:硅藻分泌针对马堡病毒核蛋白的单克隆抗体的分子设计

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Background The ideal protein expression system should provide recombinant proteins in high quality and quantity involving low production costs only. However, especially for complex therapeutic proteins like monoclonal antibodies many challenges remain to meet this goal and up to now production of monoclonal antibodies is very costly and delicate. Particularly, emerging disease outbreaks like Ebola virus in Western Africa in 2014–2016 make it necessary to reevaluate existing production platforms and develop robust and cheap alternatives that are easy to handle. Results In this study, we engineered the microalga Phaeodactylum tricornutum to produce monoclonal IgG antibodies against the nucleoprotein of Marburg virus, a close relative of Ebola virus causing severe hemorrhagic fever with high fatality rates in humans. Sequences for both chains of a mouse IgG antibody were retrieved from a murine hybridoma cell line and implemented in the microalgal system. Fully assembled antibodies were shown to be secreted by the alga and antibodies were proven to be functional in western blot, ELISA as well as IFA studies just like the original hybridoma produced IgG. Furthermore, synthetic variants with constant regions of a rabbit IgG and human IgG with optimized codon usage were produced and characterized. Conclusions This study highlights the potential of microalgae as robust and low cost expression platform for monoclonal antibodies secreting IgG antibodies directly into the culture medium. Microalgae possess rapid growth rates, need basically only water, air and sunlight for cultivation and are very easy to handle.
机译:背景技术理想的蛋白质表达系统应提供高质量和高产量的重组蛋白质,而只涉及较低的生产成本。然而,特别是对于诸如单克隆抗体之类的复杂治疗性蛋白质,要实现该目标仍然存在许多挑战,并且迄今为止,单克隆抗体的生产非常昂贵且精细。特别是,2014-2016年西非埃博拉病毒等新兴疾病暴发使得有必要重新评估现有的生产平台,并开发易于处理的功能强大且价格低廉的替代品。结果在这项研究中,我们设计了微藻三角角藻(Phaeodactylum tricornutum),以产生抗马尔堡病毒核蛋白的单克隆IgG抗体,马尔堡病毒是埃博拉病毒的近亲,可引起严重的出血热,并具有很高的死亡率。从鼠杂交瘤细胞系中检索出小鼠IgG抗体两条链的序列,并在微藻系统中实施。藻类分泌出完全组装的抗体,并且证明该抗体在蛋白质印迹,ELISA和IFA研究中具有功能,就像原始杂交瘤产生的IgG一样。此外,产生并表征了具有优化的密码子使用的兔IgG和人IgG恒定区的合成变体。结论这项研究突出了微藻作为将IgG抗体直接分泌到培养基中的单克隆抗体的强大且低成本表达平台的潜力。微藻具有快速的生长速度,基本上只需要水,空气和阳光来进行培养,并且非常易于处理。

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