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脂酶介导的生物催化途径产生具有抗菌活性的芹菜素酯。

Umbelliferone esters with antibacterial activity produced by lipase-mediated biocatalytic pathway.

机构信息

Laboratory of Natural Products and Biological Assays, Natural Products and Food Department, Pharmacy Faculty, Center of Health Sciences, Federal University of Rio de Janeiro (UFRJ), Av. Carlos Chagas Filho, N.° 373, Rio de Janeiro, RJ, 21941-902, Brazil.

Federal Institute of Paraná - IFPR, Marginal Imbirama, 300, Quedas do Iguaçu, Paraná, PR, 85460-000, Brazil.

出版信息

Biotechnol Lett. 2021 Feb;43(2):469-477. doi: 10.1007/s10529-020-03014-9. Epub 2020 Oct 12.

Abstract

OBJECTIVE

The present report describes the enzymatic acylation of umbelliferone with different vinyl esters as acyl donors biocatalyzed by the commercial lipase Novozym® 435, and the investigation for their antibacterial activity against ATCC and clinical strains isolated from hospital infection sites.

RESULTS

The umbelliferone esters (1-5) were synthesized through the acylation reaction of 7-hydroxy-2H-chromen-2-one with different long chain vinyl esters catalyzed by the lipase Novozym 435. The reaction conditions were: 10% Novozym 435; tetrahydrofuran:acetone (3:1) for the reactions with acetate, propionate and butyrate vinyl esters 50-90% conversion, and (9:1) for decanoate and laurate vinyl esters 10-15% conversion; acyl donor/umbelliferone molar ratio of 10:1 and 60 °C. All the umbelliferone esters were characterized NMR and (HRMS). The antibacterial activity of the products were tested using the broth microdilution method in order to determine the minimum inhibitory concentration (MIC). The results displayed by 7-laurate and 7-decanoate-umbelliferone esters showed the highest antibacterial potential, with 1 mM inhibitory activity for ATCC 33591, a methicillin and oxacillin resistant Staphylococcus aureus strain. They were also able to inhibit gram-negative bacterial strains, such as Pseudomonas aeruginosa (MIC 0.5 mM) and Klebsiella pneumoniae (MIC 1 mM). In addition, 7-laurate- and 7-decanoate-umbelliferone esters were able to inhibit all clinical strains (MIC 1 mM; except 7-laurate-umbelliferone in which MIC 0.5 mM against 55a).

CONCLUSIONS

This is the first study performing the biocatalysis of umbelliferone followed by the purification of the products and the antibacterial evaluation.

摘要

目的

本报告描述了不同的乙烯基酯作为酰基供体,通过商业脂肪酶 Novozym® 435 生物催化,对伞形酮进行酶酰化,并研究其对 ATCC 和从医院感染部位分离的临床菌株的抗菌活性。

结果

通过 7-羟基-2H-色烯-2-酮与不同长链乙烯基酯的酰化反应,用脂肪酶 Novozym 435 合成了伞形酮酯(1-5)。反应条件为:10%Novozym 435;用于醋酸酯、丙酸酯和丁酸酯乙烯基酯的反应的四氢呋喃:丙酮(3:1),转化率为 50-90%,用于癸酸酯和月桂酸酯乙烯基酯的反应的(9:1),转化率为 10-15%;酰基供体/伞形酮摩尔比为 10:1,温度为 60°C。所有伞形酮酯均通过 NMR 和(HRMS)进行了表征。使用肉汤微量稀释法测试产物的抗菌活性,以确定最小抑菌浓度(MIC)。结果显示,7-月桂酸酯和 7-癸酸酯伞形酮酯表现出最高的抗菌潜力,对 ATCC 33591 即耐甲氧西林和苯唑西林的金黄色葡萄球菌菌株的抑制活性为 1mM。它们还能抑制革兰氏阴性菌,如铜绿假单胞菌(MIC 0.5mM)和肺炎克雷伯菌(MIC 1mM)。此外,7-月桂酸酯和 7-癸酸酯伞形酮酯能够抑制所有临床菌株(MIC 1mM;除了 7-月桂酸酯伞形酮酯对 55a 的 MIC 为 0.5mM)。

结论

这是首次对伞形酮进行生物催化,然后对产物进行纯化和抗菌评价的研究。

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