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Designer tubers for production of novel compounds

机译:用于生产新化合物的设计者块茎

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Based on world-wide efforts to identify novel biopharmaceuticals, numerous low (metabolites) and high (proteins) molecular weight compounds have been described which, when used for clinical treatments, would offer substantial improvements for today'sclinical therapies. As the demand for biopharmaceuticals is expected to exceed their availability, safe and cost-effective production systems are urgently needed. Plants offer several advantages over conventional production systems, but contamination offood- or feedstuff must be avoided. This can be achieved by applying inducible gene expression systems, hi contrast to dry seeds, potato tubers remain metabolically active throughout the storage period, which makes them ideal as a bioreactor for biopharmaceuticals. Using a chemically inducible gene-switch post-harvest accumulation of biomolecules can be obtained, offering the possibility to grow non-pharmaceutical containing tubers in the field. To allow post-harvest induction of pharniaceutically relevant polypeptides an ethanol inducible gene switch for potato tubers has been established and optimized. As an example for the production of an edible vaccine the papillomavirus (HPV) major capsid protein LI has been chosen. Since cervical cancer is linked to infection with HPV and is the third most common cancer among women world-wide, there is a strong demand for the development of an HPV preventive vaccine. The plant-derived LI protein displayed conformation-specific epitopes and assembled into virus-like particles. In addition to unintended contamination of food- or feedstuff with biopharmaceuticals, unauthorized distribution of seed tubers must be avoided. Since potato plants can easily be propagated in tissue culture, the use of non-sprouting tuber bearing potato varieties offers a possible strategy to restrict seed tuber distribution. Based on current biochemical and molecular knowledge transgenic potato plants producing non-sprouting tubers for restricted production of biopharmaceuticals have been designed by interfering with long-distance sucrose transport. Combining inducible gene expression systems and non-sprouting tubers should strongly improve public acceptance of GM potatoes for the production of edible vaccines or non-plant metabolites.
机译:基于世界范围的努力,以确定新的生物制药,许多低(代谢产物)和高(蛋白质)分子量化合物已经描述了,用于临床治疗的情况下,将提供对于today'sclinical疗法实质性的改进。作为生物制药的需求预计将超过其可用性,迫切需要安全和成本效益的生产系统。植物比传统的生产系统提供了若干优点,但污染offood-或饲料必须避免。这可以通过应用诱导型基因表达系统。在对比干种子来实现,马铃薯块茎在整个储藏期间,这使得它们适合作为生物药物的生物反应器保持代谢活性。使用的生物分子的化学诱导型基因开关收获后累积可以得到,将提供在该领域生长块茎含有非药物的可能性。为了允许马铃薯块茎中的乙醇可诱导基因开关已经建立并优化pharniaceutically相关多肽的收获后的诱导。作为生产的乳头状瘤病毒(HPV)主要衣壳蛋白LI已经选择可食用疫苗的一个例子。由于宫颈癌是与感染HPV,是妇女世界范围内的第三位最常见的癌症,有一个HPV预防性疫苗的发展有强烈的需求。来自植物的L1蛋白显示构象特异性表位和组装成病毒样颗粒。除了食品 - 或饲料用生物药物的意外污染,必须避免种子块茎的未经授权的分发。由于马铃薯植物可以很容易地在组织培养物中增殖,使用非发芽块茎轴承马铃薯品种提供一个可能的策略,以限制种薯分布。根据目前的生物化学和分子知识的转基因马铃薯植物生产非块茎发芽限制类生物制药生产的已经通过长途运输蔗糖干扰设计。结合诱导型基因表达系统和非萌芽块茎应强烈提高公共用于生产可食用疫苗或非植物代谢物的接受转基因马铃薯的。

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