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阿维菌素的特性鉴定与优化——一种从本地阿维链霉菌分离株中提取的强效抗寄生虫药

Characterization and optimization of abamectin-a powerful antiparasitic from a local Streptomyces avermitilis isolate.

作者信息

Osman Yehia A, Aldesuquy Heshmat S, Younis Sadia A, Hussein Suzan

机构信息

Botany Department, Faculty of Science, Mansoura University, Mansoura, 35516, Egypt.

出版信息

Folia Microbiol (Praha). 2020 Apr 23. doi: 10.1007/s12223-020-00779-4.

Abstract

Abamectin (ABA) constitutes a big commodity for pharmaceutical companies because it generates about one billion dollar annual sale. Avermectins (AVMs) and their naturally occurring analogues, milbemycins (MILs), meilingmycins (MEIs), ivermectin (IVE), abamectin (ABA), and nemadectin (NEM), represent one of the most developed antiparasitic agents. Abamectin is a mixture of avermectin B1a and avermectin B1b. The production of abamectin by Streptomyces avermitilis is a complicated process and separation of two fractions is quite difficult; commercial product contains more than 80% of Bla and less than 20% of B1b components. The main goal of the study was the identification and optimization of fermentation conditions to raise the production of abamectin from Egyptian S. avermitilis. The qualitative and quantitative analysis of avermectins was carried out by thin layer chromatography (TLC) and 6538 Q-TOF with Agilent 1290 UHPLC. The process of identification was carried out by using production medium containing 30 g/L corn starch, and 0.725 g/L CaCO, pH 7, 8% inoculum size and incubated at 32.5 °C. The enhancement of the production of abamectin is a big challenge with commercial and industrial importance, as its output is insufficient for human consumption.

摘要

阿维菌素(ABA)对制药公司来说是一种大宗商品,因为其年销售额约为10亿美元。阿维菌素(AVMs)及其天然存在的类似物米尔倍霉素(MILs)、梅岭霉素(MEIs)、伊维菌素(IVE)、阿维菌素(ABA)和奈马克丁(NEM)是最发达的抗寄生虫药物之一。阿维菌素是阿维菌素B1a和阿维菌素B1b的混合物。阿维链霉菌生产阿维菌素的过程很复杂,两种组分的分离相当困难;商业产品中B1a的含量超过80%,B1b的含量不到20%。该研究的主要目标是鉴定和优化发酵条件,以提高埃及阿维链霉菌生产阿维菌素的产量。通过薄层色谱(TLC)和配备安捷伦1290超高效液相色谱的6538 Q-TOF对阿维菌素进行定性和定量分析。鉴定过程使用含有30 g/L玉米淀粉、0.725 g/L碳酸钙、pH 7、接种量8%并在32.5℃下培养的生产培养基。提高阿维菌素的产量是一项具有商业和工业重要性的重大挑战,因为其产量不足以满足人类消费需求。

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