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(-)-(R)-α-水芹烯的生物转化:其主要代谢物的抗菌活性。

Biotransformation of (-)-(R)-α-phellandrene: antimicrobial activity of its major metabolite.

机构信息

Department of Pharmacognosy, Anadolu University, Faculty of Pharmacy, TR-26470, Eskişehir, Turkey.

出版信息

Chem Biodivers. 2012 Aug;9(8):1525-32. doi: 10.1002/cbdv.201100283.

Abstract

Terpene derivatives converted by microbial biotransformation constitute an important resource for natural pharmaceutical, fragrance, and aroma substances. In the present study, the monoterpene α-phellandrene was biotransformed by 16 different strains of microorganisms (bacteria, fungi, and yeasts). The transformation metabolites were initially screened by TLC and GC/MS, and then further characterized by NMR spectroscopic techniques. Among the six metabolites characterized, 6-hydroxypiperitone, α-phellandrene epoxide, cis-p-menth-2-en-1-ol, and carvotanacetone, which originated from (-)-(R)-α-phellandrene, are reported for the first time in this study. Additionally, the substrate and the metabolite 5-p-menthene-1,2-diol were subjected to in vitro antibacterial and anticandidal tests. The metabolite showed moderate-to-good inhibitory activities (MICs=0.125 to >4 mg/ml) against various bacteria and especially against Candida species in comparison with its substrate (-)-(R)-α-phellandrene and standard antimicrobial agents.

摘要

微生物转化生成的萜烯衍生物是天然药物、香料和香气物质的重要资源。在本研究中,16 种不同的微生物(细菌、真菌和酵母)对单萜α-水芹烯进行了生物转化。转化代谢产物最初通过 TLC 和 GC/MS 进行筛选,然后通过 NMR 光谱技术进一步表征。在所鉴定的六种代谢产物中,6-羟基胡椒酮、α-水芹烯环氧化物、顺式-薄荷-2-烯-1-醇和香芹酮,均来源于(-)-(R)-α-水芹烯,这在本研究中是首次报道。此外,底物和代谢产物 5-薄荷烯-1,2-二醇进行了体外抗菌和抗真菌测试。与底物(-)-(R)-α-水芹烯和标准抗菌剂相比,该代谢产物对各种细菌,尤其是对念珠菌属具有中等至良好的抑制活性(MICs=0.125 至>4mg/ml)。

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