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高通量提取植物、海洋和真菌标本以保存具有生物活性的分子。

High throughput extraction of plant, marine and fungal specimens for preservation of biologically active molecules.

机构信息

Natural Products Support Group, Applied/Developmental Research Support Program, SAIC-Frederick, Inc., NCI-Frederick, Frederick, MD 21702, USA.

出版信息

Molecules. 2010 Jun 24;15(7):4526-63. doi: 10.3390/molecules15074526.

Abstract

The Developmental Therapeutics Program (DTP) of the U.S. National Cancer Institute (NCI), at its NCI-Frederick facility, has built perhaps the largest and most diverse natural products screening library in the world for drug discovery. Composed of plant, marine organism and microbial extracts, it currently contains in excess of 230,000 unique materials. From the inception of this program to identify new anticancer chemotherapeutics from natural products sources in 1987, two extracts have been sequentially prepared from each specimen: one produced by organic solvent extraction, which yields a complex material that contains non- to moderately polar small molecules, and a water-soluble extract, a milieu largely unexplored for useful drugs in earlier years, which contains polar small to medium-sized molecules. Plant specimens and microbial ferments are extracted by modified traditional methods, while the method developed to produce extracts from marine organisms is unique and very different from that used by marine natural products chemists previously, but again yields both an organic solvent soluble and a water soluble material for inclusion into the screening library. Details of high throughput extract production for preservation of biologically active molecules are presented.

摘要

美国国立癌症研究所(NCI)的发育治疗学计划(DTP)在其弗雷德里克设施中建立了世界上最大和最多样化的天然产物筛选库,用于药物发现。该库由植物、海洋生物和微生物提取物组成,目前包含超过 23 万种独特的物质。自 1987 年该计划从天然产物来源中识别新的抗癌化疗药物以来,已从每种标本中连续制备了两种提取物:一种由有机溶剂提取产生,其中包含非极性到中等极性的小分子的复杂物质,另一种是水溶性提取物,在早年探索有用药物时,这个环境大部分未被开发,其中包含极性小分子到中分子。植物标本和微生物发酵采用改良的传统方法提取,而从海洋生物中提取的方法是独特的,与以前的海洋天然产物化学家使用的方法非常不同,但同样产生了可溶于有机溶剂和水溶性的物质,纳入筛选库。介绍了为保存具有生物活性的分子而进行高通量提取物生产的细节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c5d/6257593/d706fb637a31/molecules-15-04526-g001.jpg

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