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Application of pH-Zone-Refining CCC to the Isolation of Antifungal Fermentation Products

机译:pH区精制CCC在抗真菌发酵产物分离中的应用

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The application of pH-zone-refining countercurrent chromatography (CCC) to the purification and bioassay guided isolation of novel antifungal agents from fungal fermentation extracts is demonstrated with separations of three families of acidic natural products. The separations were carried out suing two types of commercially available multiplayer coil planet centrifuges. Using this methodology as the final isolation step, three new glycosylated polyketides, arthrinosides A-C, were isolated from fermentation extracts of an Arthrinium sp. The three compounds differ in the length and hydroxylation of the polyketide chain and were not easily separable using normal or reverse phase column chromatography. Mycoparasitic acids A and B, new natural products differing only in epoxidation of an endocyclic double bond, were separated directly from crude fungal culture extracts. This CCC method was applied to the purification of a new biotransformation product of sordarin resulting from hydroxylation at C-11. Several hundred milligrams of this new derivative were easily separated in a single chromatographic run.
机译:通过分离三个酸性天然产物家族,证明了pH区域精制逆流色谱(CCC)在从真菌发酵提取物中纯化和生物测定指导的新型抗真菌剂分离中的应用。分离使用两种类型的市售多级螺旋行星式离心机进行。使用这种方法作为最后的分离步骤,从节肢动物菌的发酵提取物中分离出了三个新的糖基化聚酮化合物,节油苷A-C。这三种化合物在聚酮化合物链的长度和羟基化方面有所不同,并且使用正相或反相柱色谱法不易分离。直接从粗真菌培养物提取物中分离出了真菌寄生虫酸A和B,它们只是内环双键的环氧化作用不同的新天然产物。此CCC方法应用于纯化由C-11羟基化产生的新的柑桔生物转化产物。只需一次色谱操作即可轻松分离出数百毫克的这种新衍生物。

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