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Creation of a high-yielding recombinant maize hybrid for the production of a microbicide to prevent HIV-1 transmission

机译:创建高产重组玉米杂交种,用于生产可防止HIV-1传播的杀微生物剂

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The aim of this study was to use conventional breeding to increase the production in maize of the human monoclonal antibody 2G12, known to have potential therapeutic properties in the prevention of HIV-1 transmission. The recombinant antibody, together with a fluorescent marker, was introduced into two South African high-performing maize elite inbred lines by crossing them with a transgenic maize line that had been transformed with the monoclonal antibody 2G12. The effect of breeding to produce high-expressing recombinant hybrid seed was evaluated by comparing 2G12 production in the different breeding lines with the original maize line. ‘Good production practice standards’ were followed throughout the breeding programme. ‘Conventional drug regulations’ adapted to plant- made pharmaceuticals were also followed, with the seeds being stored in a ‘master seed bank’. The maize hybrid expressed a higher level of the antibody than the recombinant maize elite lines. This plant-derived antibody provides a means of producing a microbicide component that could be used with other HIV-neutralising antibodies as an additional approach to prevent HIV infection.
机译:这项研究的目的是利用常规育种提高玉米中人单克隆抗体2G12的产量,已知该单克隆抗体2G12具有预防HIV-1传播的潜在治疗作用。通过将重组抗体与荧光标记一起与已经用单克隆抗体2G12转化的转基因玉米品系杂交,将其引入到两个南非高性能玉米优良自交系中。通过比较不同育种系与原始玉米系的2G12产量来评估育种产生高表达重组杂种种子的效果。在整个育种计划中都遵循“良好生产规范”。还遵循了适用于植物药的“常规药物法规”,种子被存储在“主种子库”中。玉米杂种表达的抗体水平高于重组玉米优良品系。这种植物来源的抗体提供了一种生产杀菌剂成分的方法,该成分可与其他HIV中和抗体一起使用,作为预防HIV感染的另一种方法。

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