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首页> 外文期刊>Planta medica: Natural products and medicinal plant research >Ethnobotany and Medicinal Plant Biotechnology: From Tradition to Modern Aspects of Drug Development
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Ethnobotany and Medicinal Plant Biotechnology: From Tradition to Modern Aspects of Drug Development

机译:乙醛和药用植物生物技术:从传统到现代的药物开发方面

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摘要

Secondary natural products from plants are important drug leads for the development of new drug candidates for rational clinical therapy and exhibit a variety of biological activities in experimental pharmacology and serve as structural template in medicinal chemistry. The exploration of plants and discovery of natural compounds based on ethnopharmacology in combination with high sophisticated analytics is still today an important drug discovery to characterize and validate potential leads. Due to structural complexity, low abundance in biological material, and high costs in chemical synthesis, alternative ways in production like plant cell cultures, heterologous biosynthesis, and synthetic biotechnology are applied. The basis for any biotechnological process is deep knowledge in genetic regulation of pathways and protein expression with regard to todays “omics” technologies. The high number genetic techniques allowed the implementation of combinatorial biosynthesis and wide genome sequencing. Consequently, genetics allowed functional expression of biosynthetic cascades from plants and to reconstitute low-performing pathways in more productive heterologous microorganisms. Thus, de novo biosynthesis in heterologous hosts requires fundamental understanding of pathway reconstruction and multitude of genes in a foreign organism. Here, actual concepts and strategies are discussed for pathway reconstruction and genome sequencing techniques cloning tools to bridge the gap between ethnopharmaceutical drug discovery to industrial biotechnology.
机译:来自植物的二级天然产物是有理性临床治疗的新毒品候选者的重要药物,并在实验药理学中表现出各种生物活性,并用作药物化学的结构模板。基于民族科医药学的植物和发现基于高复杂分析的天然化合物的发现仍然是表征和验证潜在领导的重要药物发现。由于结构复杂性,生物材料的低丰度,以及化学合成的高成本,应用了植物细胞培养物,异源生物合成和合成生物技术等替代方式。任何生物技术过程的基础都是关于当今“OMIC”技术方面的途径和蛋白质表达的遗传调节。高分遗传技术允许实施组合生物合成和广泛的基因组测序。因此,遗传学允许从植物中生物合成级联的功能表达,并在更生产的异源微生物中重构低性交途径。因此,异源宿主中的De Novo生物合成需要对外部生物体中的途径重建和众多基因的基本理解。在这里,讨论了实际概念和策略对于途径重建和基因组测序技术克隆工具,以弥合产业生物技术的民族科学药物发现之间的差距。

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