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哺乳动物代谢的微生物模型。使用雅致小克银汉霉对HP 749(贝西吡啶)进行生物转化。

Microbial models of mammalian metabolism. Biotransformations of HP 749 (besipirdine) using Cunninghamella elegans.

作者信息

Rao G P, Davis P J

机构信息

Department of Medicinal and Natural Products Chemistry, College of Pharmacy, University of Texas at Austin, USA.

出版信息

Drug Metab Dispos. 1997 Jun;25(6):709-15.

PMID:9193872
Abstract

HP 749 (besipirdine; Hoechst-Roussel Pharmaceuticals, Inc., Somerville, NJ) and related analogs belonging to the N-(4-pyridinyl)-1H-indol-1-amine class of compounds have shown a potential to mitigate multiple biochemical deficits associated with Alzheimer's disease. HP 749 has demonstrated cholinergic and nonadrenergic activities both in vitro and in vivo, and has potential for the symptomatic treatment of Alzheimer's disease. The three primary metabolites of HP 749 in dogs, rats, and humans result from hydroxylation of the indole ring, N-dealkylation of the parent compound, and sequential hydroxylation and dealkylation. The fungus Cunninghamella elegans (ATCC 36112) converts 25% of HP 749 in a dextrose broth to yield four metabolites, three of which have been reported in mammalian systems. Preparative scale fermentation allowed for the isolation of the major fungal metabolite resulting from hydroxylation of the indole nucleus at position 5 (16%), which was characterized by cochromatographic (TLC and HPLC), 1H-NMR, mass spectral (chemical ionization/MS), and UV comparisons to a synthetic standard. Additional minor fungal metabolites were formed as a result of N-dealkylation (2%), and sequential N-dealkylation and aromatic hydroxylation (2.5%). C. elegans is being used as a model to help predict and generate the logical mammalian metabolites of related structural analogs of HP 749.

摘要

HP 749(贝西吡啶;赫斯特-罗素制药公司,新泽西州萨默维尔)以及属于N-(4-吡啶基)-1H-吲哚-1-胺类化合物的相关类似物已显示出减轻与阿尔茨海默病相关的多种生化缺陷的潜力。HP 749在体外和体内均表现出胆碱能和非肾上腺素能活性,并且具有对症治疗阿尔茨海默病的潜力。HP 749在犬、大鼠和人体内的三种主要代谢产物分别来自吲哚环的羟基化、母体化合物的N-脱烷基化以及连续的羟基化和脱烷基化。真菌雅致小克银汉霉(ATCC 36112)在葡萄糖肉汤中将25%的HP 749转化为四种代谢产物,其中三种已在哺乳动物系统中报道。制备规模发酵使得能够分离出吲哚核在5位羟基化产生的主要真菌代谢产物(16%),通过与合成标准品进行共色谱分析(薄层色谱法和高效液相色谱法)、1H-核磁共振、质谱(化学电离/质谱)和紫外比较对其进行了表征。另外的次要真菌代谢产物是由N-脱烷基化(2%)以及连续的N-脱烷基化和芳环羟基化(2.5%)形成的。雅致小克银汉霉正被用作模型,以帮助预测和生成HP 749相关结构类似物的合理哺乳动物代谢产物。

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