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首页> 外文期刊>Pharmacological research: The official journal of The Italian Pharmacological Society >Advanced research technology for discovery of new effective compounds from Chinese herbal medicine and their molecular targets
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Advanced research technology for discovery of new effective compounds from Chinese herbal medicine and their molecular targets

机译:从中国草药和分子靶点发现新的有效化合物的先进研究技术

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摘要

Traditional biotechnology has been utilized by human civilization for long in wide aspects of our daily life, such as wine and vinegar production, which can generate new phytochemicals from natural products using micro-organism. Today, with advanced biotechnology, diverse applications and advantages have been exhibited not only in bringing benefits to increase the diversity and composition of herbal phytochemicals, but also helping to elucidate the treatment mechanism and accelerate new drug discovery from Chinese herbal medicine (CHM). Applications on phytochemical biotechnologies and microbial biotechnologies have been promoted to enhance phytochemical diversity. Cell labeling and imaging technology and omics technology have been utilized to elucidate CHM treatment mechanism. Application of computational methods, such as chemoinformatics and bioinformatics provide new insights on direct target of CHM. Overall, these technologies provide efficient ways to overcome the bottleneck of CHM, such as helping to increase the phytochemical diversity, match their molecular targets and elucidate the treatment mechanism. Potentially, new oriented herbal phytochemicals and their corresponding drug targets can be identified. In perspective, tighter integration of multi-disciplinary biotechnology and computational technology will be the cornerstone to accelerate new arena formation, advancement and revolution in the fields of CHM and world pharmaceutical industry. (C) 2016 Elsevier Ltd. All rights reserved.
机译:人类文明在我们日常生活中的广泛方面,如葡萄酒和醋生产,如葡萄酒和醋制造,这些生物技术已经利用,这些文明可以使用微生物从天然产品产生新的植物化学物质。今天,随着先进的生物技术,多样化的应用和优势,不仅在带来了增加草药植物化学物质的多样性和组成的益处,而且有助于阐明治疗机制并加速来自中草药(CHM)的新药物发现。促进了植物化学生物技术和微生物生物技术的应用,以增强植物化学多样性。用于阐明CHM处理机制的细胞标记和成像技术和OMICS技术。计算方法的应用,例如化疗信息和生物信息学提供了关于CHM直接目标的新见解。总体而言,这些技术提供了有效的方法来克服CHM的瓶颈,例如帮助增加植物化学分集,匹配其分子靶点并阐明治疗机制。潜在地,可以识别出新的面向草药植物化学品及其相应的药物靶标。在透视的情况下,更严格地整合多学科生物技术和计算技术将是加快CHM和世界制药业领域的新舞台形成,进步和革命的基石。 (c)2016 Elsevier Ltd.保留所有权利。

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