Ko K, Brodzik R, Steplewski Z
Department of Biologcal Science, College of Natural Sciences, Wonkwang University, Iksan, Jeonbuk, 570-749, Korea.
Curr Top Microbiol Immunol. 2009;332:55-78. doi: 10.1007/978-3-540-70868-1_4.
Advances in molecular biology, immunology, and plant biotechnology have changed the paradigm of plant as a food source to so-called plant bioreactor to produce valuable recombinant proteins. These include therapeutic or diagnostic monoclonal antibodies, vaccines, and other biopharmaceutical proteins. The plant as a bioreactor for the production of therapeutic proteins has several advantages, which include the lack of animal pathogenic contaminants, low cost of production, and ease of agricultural scale-up compared to other currently available systems. Thus, plants are considered to be a potential alternative to compete with other systems such as bacteria, yeast, or insect and mammalian cell culture. Plant production systems, particularly therapeutic antibodies, are very attractive to pharmaceutical companies to produce the antibodies in demand. Currently, we have successfully developed a plant system for production of anti-rabies monoclonal antibody and anti-colorectal cancer monoclonal antibody. The effective plant production system for recombinant antibodies requires the appropriate plant expression machinery with optimal combination of transgene expression regulatory elements, control of posttranslational protein processing, and efficient purification methods for product recovery. However, there are several limitations that have to be resolved to establish the efficient plant system for antibody production. Here, we discuss the approaches and perspectives in plant systems to produce monoclonal antibody.
分子生物学、免疫学和植物生物技术的进展已将植物作为食物来源的范式转变为所谓的植物生物反应器,用于生产有价值的重组蛋白。这些蛋白包括治疗性或诊断性单克隆抗体、疫苗及其他生物制药蛋白。植物作为生产治疗性蛋白的生物反应器具有若干优势,包括不存在动物致病污染物、生产成本低,以及与其他现有系统相比易于进行农业规模扩大。因此,植物被认为是与细菌、酵母、昆虫及哺乳动物细胞培养等其他系统竞争的潜在替代方案。植物生产系统,尤其是治疗性抗体,对制药公司生产所需抗体极具吸引力。目前,我们已成功开发出一种用于生产抗狂犬病单克隆抗体和抗结直肠癌单克隆抗体的植物系统。用于重组抗体的有效植物生产系统需要合适的植物表达机制,以及转基因表达调控元件的最佳组合、翻译后蛋白质加工的控制和用于产品回收的高效纯化方法。然而,要建立高效的植物抗体生产系统,还需解决若干限制因素。在此,我们讨论植物系统中生产单克隆抗体的方法和前景。