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植物作为人类药物的工厂:应用与挑战

Plants as Factories for Human Pharmaceuticals: Applications and Challenges.

作者信息

Yao Jian, Weng Yunqi, Dickey Alexia, Wang Kevin Yueju

机构信息

Emergency Department, The Affiliated Hospital of Qingdao University, Qingdao 266003, China.

Department of Natural Sciences Northeastern State University at Broken Arrow, Broken Arrow, OK 74014, USA.

出版信息

Int J Mol Sci. 2015 Dec 2;16(12):28549-65. doi: 10.3390/ijms161226122.

Abstract

Plant molecular farming (PMF), defined as the practice of using plants to produce human therapeutic proteins, has received worldwide interest. PMF has grown and advanced considerably over the past two decades. A number of therapeutic proteins have been produced in plants, some of which have been through pre-clinical or clinical trials and are close to commercialization. Plants have the potential to mass-produce pharmaceutical products with less cost than traditional methods. Tobacco-derived antibodies have been tested and used to combat the Ebola outbreak in Africa. Genetically engineered immunoadhesin (DPP4-Fc) produced in green plants has been shown to be able to bind to MERS-CoV (Middle East Respiratory Syndrome), preventing the virus from infecting lung cells. Biosafety concerns (such as pollen contamination and immunogenicity of plant-specific glycans) and costly downstream extraction and purification requirements, however, have hampered PMF production from moving from the laboratory to industrial application. In this review, the challenges and opportunities of PMF are discussed. Topics addressed include; transformation and expression systems, plant bioreactors, safety concerns, and various opportunities to produce topical applications and health supplements.

摘要

植物分子农场(PMF)被定义为利用植物生产人类治疗性蛋白质的实践,已受到全球关注。在过去二十年中,PMF有了显著的发展和进步。许多治疗性蛋白质已在植物中生产出来,其中一些已通过临床前或临床试验,接近商业化阶段。与传统方法相比,植物有潜力以更低的成本大规模生产药品。烟草衍生的抗体已进行测试,并用于抗击非洲的埃博拉疫情。绿色植物中生产的基因工程免疫黏附素(DPP4-Fc)已被证明能够与中东呼吸综合征冠状病毒(MERS-CoV)结合,防止该病毒感染肺细胞。然而,生物安全问题(如花粉污染和植物特异性聚糖的免疫原性)以及昂贵的下游提取和纯化要求,阻碍了PMF生产从实验室走向工业应用。在这篇综述中,讨论了PMF面临的挑战和机遇。涉及的主题包括:转化和表达系统、植物生物反应器、安全问题以及生产局部应用产品和健康补充剂的各种机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a0b/4691069/0ccf553b37e0/ijms-16-26122-g001.jpg

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