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用于全球健康的植物分子农业中的工程方法。

Engineering Approaches in Plant Molecular Farming for Global Health.

作者信息

Singh Advaita Acarya, Pillay Priyen, Tsekoa Tsepo Lebiletsa

机构信息

Future Production, Chemicals Cluster, Council for Scientific and Industrial Research, Pretoria 0001, South Africa.

出版信息

Vaccines (Basel). 2021 Nov 3;9(11):1270. doi: 10.3390/vaccines9111270.

Abstract

Since the demonstration of the first plant-produced proteins of medical interest, there has been significant growth and interest in the field of plant molecular farming, with plants now being considered a viable production platform for vaccines. Despite this interest and development by a few biopharmaceutical companies, plant molecular farming is yet to be embraced by 'big pharma'. The plant system offers a faster alternative, which is a potentially more cost-effective and scalable platform for the mass production of highly complex protein vaccines, owing to the high degree of similarity between the plant and mammalian secretory pathway. Here, we identify and address bottlenecks in the use of plants for vaccine manufacturing and discuss engineering approaches that demonstrate both the utility and versatility of the plant production system as a viable biomanufacturing platform for global health. Strategies for improving the yields and quality of plant-produced vaccines, as well as the incorporation of authentic posttranslational modifications that are essential to the functionality of these highly complex protein vaccines, will also be discussed. Case-by-case examples are considered for improving the production of functional protein-based vaccines. The combination of all these strategies provides a basis for the use of cutting-edge genome editing technology to create a general plant chassis with reduced host cell proteins, which is optimised for high-level protein production of vaccines with the correct posttranslational modifications.

摘要

自从首次展示出具有医学价值的植物生产蛋白以来,植物分子农业领域取得了显著发展并引发了广泛关注,如今植物被视为一种可行的疫苗生产平台。尽管一些生物制药公司对此感兴趣并开展了相关研发,但植物分子农业尚未得到“大型制药公司”的认可。由于植物和哺乳动物分泌途径高度相似,植物系统提供了一种更快的替代方案,这是一个潜在的更具成本效益且可扩展的平台,用于大规模生产高度复杂的蛋白疫苗。在此,我们识别并解决在利用植物进行疫苗制造过程中存在的瓶颈问题,并讨论一些工程方法,这些方法展示了植物生产系统作为全球健康领域可行的生物制造平台的实用性和多功能性。还将讨论提高植物生产疫苗的产量和质量的策略,以及纳入对这些高度复杂的蛋白疫苗功能至关重要的真实翻译后修饰的策略。针对提高基于功能蛋白的疫苗产量的具体案例也会进行探讨。所有这些策略的结合为利用前沿基因组编辑技术创建一个宿主细胞蛋白减少的通用植物底盘提供了基础,该底盘针对具有正确翻译后修饰的疫苗的高水平蛋白生产进行了优化。

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