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膳食儿茶酚对肠道致病菌生长的影响。

Influence of dietary catechols on the growth of enteropathogenic bacteria.

作者信息

Freestone Primrose P E, Walton Nicholas J, Haigh Richard D, Lyte Mark

机构信息

Department of Infection, Immunology and Inflammation, University of Leicester School of Medicine, Leicester, UK.

出版信息

Int J Food Microbiol. 2007 Nov 1;119(3):159-69. doi: 10.1016/j.ijfoodmicro.2007.07.039. Epub 2007 Aug 1.

Abstract

The dietary constituents that may act, in the broadest sense, as co-factors to enable bacterial enteropathogens to replicate in gastrointestinal environments are still largely unknown. Recent work has demonstrated that certain non-nutritional components of food, such as the catecholamines, can contribute to the ability of Gram-negative pathogens to replicate in iron-restrictive media that may be reflective of gastrointestinal environments. The present report examines whether other, non-catecholamine, dietary catechols, which occur widely in plant foods, can also influence enteropathogen growth in an iron-restrictive environment such as might be found in the gastrointestinal tract. In the present study, we have examined the ability of a range of catechol-rich foodstuffs, ranging from beverages (tea and coffee) to fruit and vegetable extracts, as well as purified preparations of commonly consumed dietary catechols (catechins, chlorogenic acid, caffeic acid and tannic acid), to modulate the growth of the Gram-negative enteric pathogens Escherichia coli O157:H7 and Salmonella enterica SV Enteriditis. Time-dependent growth in response to dietary catechols (0.05-5.0% v/v of beverage or fruit/vegetable extracts; 10-200 microM of purified catechols) was examined in an iron-replete, rich medium as well as in an iron-limited, basal medium designed to reflect the iron-restricted environment that is more characteristic of human and animal tissues. Results obtained in iron-replete, rich medium demonstrated dose-dependent bacteriostatic effects for certain catechols, consistent with previous studies. However, in iron-restricted medium, all of the dietary catechols produced marked growth stimulation of up to 4 logs greater than non-supplemented controls. Mechanistic studies measuring the uptake of radiolabelled (55)Fe from (55)Fe-labelled lactoferrin and transferrin in bacteria grown in the presence or absence of dietary catechols demonstrated that the ability of catechols to stimulate bacterial growth was dependent on the provision of iron from iron-sequestering glycoproteins. Urea gel analysis of transferrin incubated in the presence of the dietary catechols confirmed that these compounds were directly chelating and removing transferrin-complexed iron. Analysis using E. coli O157:H7 entA and tonB mutants further showed that a functional siderophore synthesis and uptake system was required for the growth-stimulatory response. In contrast to previous studies, which have reported the anti-microbial activity of dietary catechols, the present study demonstrates that these non-nutritional components of foods can, under iron-restrictive conditions, provide iron and enable the growth of enteric bacterial pathogens.

摘要

从最广泛的意义上讲,能够作为辅助因子使细菌性肠道病原体在胃肠道环境中复制的膳食成分在很大程度上仍然未知。最近的研究表明,食物中的某些非营养成分,如儿茶酚胺,可有助于革兰氏阴性病原体在可能反映胃肠道环境的缺铁培养基中复制。本报告探讨了在植物性食物中广泛存在的其他非儿茶酚胺类膳食儿茶酚是否也能在类似胃肠道中发现的缺铁环境中影响肠道病原体的生长。在本研究中,我们检测了一系列富含儿茶酚的食品,从饮料(茶和咖啡)到水果和蔬菜提取物,以及常见膳食儿茶酚(儿茶素、绿原酸、咖啡酸和单宁酸)的纯化制剂,对革兰氏阴性肠道病原体大肠杆菌O157:H7和肠炎沙门氏菌肠炎亚种生长的调节作用。在富含铁的丰富培养基以及旨在反映更具人类和动物组织特征的缺铁环境的缺铁基础培养基中,检测了对膳食儿茶酚(饮料或水果/蔬菜提取物的0.05 - 5.0% v/v;纯化儿茶酚的10 - 200 microM)的时间依赖性生长反应。在富含铁的丰富培养基中获得的结果表明,某些儿茶酚具有剂量依赖性的抑菌作用,这与先前的研究一致。然而,在缺铁培养基中,所有膳食儿茶酚均使细菌生长显著刺激,比未添加对照高出多达4个对数。通过测量在有或无膳食儿茶酚存在的情况下生长的细菌中从55Fe标记的乳铁蛋白和转铁蛋白摄取放射性标记(55)Fe的机制研究表明,儿茶酚刺激细菌生长的能力取决于从铁螯合糖蛋白中提供铁。在膳食儿茶酚存在下孵育的转铁蛋白的尿素凝胶分析证实,这些化合物直接螯合并去除与转铁蛋白结合的铁。使用大肠杆菌O157:H7 entA和tonB突变体的分析进一步表明,生长刺激反应需要功能性铁载体合成和摄取系统。与先前报道膳食儿茶酚抗菌活性的研究不同,本研究表明,在缺铁条件下,这些食物中的非营养成分可以提供铁并促进肠道细菌病原体的生长。

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