Holloway A C, Mueller-Harvey I, Gould S W J, Fielder M D, Naughton D P, Kelly A F
School of Life Sciences, Kingston University, London, UK.
School of Agriculture, Policy and Development, University of Reading, Reading, UK.
Lett Appl Microbiol. 2015 Oct;61(4):381-9. doi: 10.1111/lam.12472. Epub 2015 Aug 30.
The aim of the study was to compare the antimicrobial activities of freshly made, heat-treated (HT) and 14 day stored (+)-Catechin solutions with (+)-catechin flavanol isomers in the presence of copper sulphate. (+)-Catechin activity was investigated when combined with different ratios of Cu(2+) ; 100°C heat treatment; autoclaving; and 14 day storage against Staphylococcus aureus. Cu(2+) -(+)-Catechin complexation, isomer structure-activity relationships, and H2 O2 generation were also investigated. Freshly made, HT, and 14 day stored flavanols showed no activity. While combined Cu(2+) -autoclaved (+)-Catechin and -HT(+)-Catechin activities were similar, HT(+)-Catechin was more active than either freshly made (+)-catechin (generating more H2 O2 ) or (-)-Epicatechin (though it generated less H2 O2 ) or 14 day-(+)-Catechin (which had similar activity to Cu(2+) controls-although it generated more H2 O2 ). When combined with Cu(2+) , in terms of rates of activity, HT(+)-Catechin was lower than (-)-Epigallocatechin gallate and greater than freshly made (+)-Catechin. Freshly made and HT(+)-Catechin formed acidic complexes with Cu(2+) as indicated by pH and UV-vis measurements although pH changes did not account for antimicrobial activity. Freshly made and HT(+)-Catechin both formed Cu(2+) complexes. The HT(+)-Catechin complex generated more H2 O2 which could explain its higher antimicrobial activity.
Natural products attract considerable attention in the search for novel antimicrobials, prebiotics and antioxidants. Enhanced biological activity of natural products has been demonstrated with chemical and heat treatment. This article extends the few publications on heat treatments of plant products and combinations with adjuncts, to raise antimicrobial activity against pathogens such as Staphylococcus aureus. We demonstrated that heat treatment could increase the activity of (+)-Catechin, a weak antimicrobial flavanol found commonly in plants in the presence of copper sulphate. Heat treatment of readily available resources merits consideration in the development of more potent substances for use in clinical settings and agriculture.
本研究的目的是比较新制备的、经过热处理(HT)和储存14天的(+)-儿茶素溶液与(+)-儿茶素黄烷醇异构体在硫酸铜存在下的抗菌活性。研究了(+)-儿茶素与不同比例的Cu(2+)结合、100°C热处理、高压灭菌以及储存14天后对金黄色葡萄球菌的活性。还研究了Cu(2+)-(+)-儿茶素络合、异构体结构-活性关系以及过氧化氢的生成。新制备的、经过热处理的和储存14天的黄烷醇均无活性。虽然Cu(2+)-高压灭菌的(+)-儿茶素和-热处理的(+)-儿茶素活性相似,但热处理的(+)-儿茶素比新制备的(+)-儿茶素(产生更多过氧化氢)、(-)-表儿茶素(尽管其产生的过氧化氢较少)或储存14天的(+)-儿茶素(其活性与Cu(2+)对照相似,尽管它产生更多过氧化氢)更具活性。当与Cu(2+)结合时,就活性速率而言,热处理的(+)-儿茶素低于(-)-表没食子儿茶素没食子酸酯且高于新制备的(+)-儿茶素。如pH和紫外可见光谱测量所示,新制备的和热处理的(+)-儿茶素与Cu(2+)形成酸性络合物,尽管pH变化不能解释抗菌活性。新制备的和热处理的(+)-儿茶素均形成了Cu(2+)络合物。热处理的(+)-儿茶素络合物产生更多过氧化氢,这可以解释其较高的抗菌活性。
天然产物在寻找新型抗菌剂、益生元和抗氧化剂方面备受关注。化学和热处理已证明可增强天然产物的生物活性。本文扩展了关于植物产品热处理及其与添加剂组合以提高对金黄色葡萄球菌等病原体抗菌活性的少数出版物。我们证明,在硫酸铜存在下,热处理可提高(+)-儿茶素的活性,(+)-儿茶素是一种在植物中常见的弱抗菌黄烷醇。在开发用于临床和农业的更有效物质时,值得考虑对现成资源进行热处理。