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天然杀菌剂鸡尾酒:灵菌红素与生物表面活性剂的组合抗生素效应。

Natural biocide cocktails: Combinatorial antibiotic effects of prodigiosin and biosurfactants.

机构信息

Institute of Molecular Enzyme Technology, Heinrich Heine University Düsseldorf, Forschungszentrum Jülich, Jülich, Germany.

IBG-1: Biotechnology, Forschungszentrum Jülich GmbH, Jülich, Germany.

出版信息

PLoS One. 2018 Jul 19;13(7):e0200940. doi: 10.1371/journal.pone.0200940. eCollection 2018.

Abstract

Bacterial secondary metabolites are naturally produced to prevail amongst competitors in a shared habitat and thus represent a valuable source for antibiotic discovery. The transformation of newly discovered antibiotic compounds into effective drugs often requires additional surfactant components for drug formulation. Nature may also provide blueprints in this respect: A cocktail of two compounds consisting of the antibacterial red pigment prodigiosin and the biosurfactant serrawettin W1 is naturally produced by the bacterium Serratia marcescens, which occurs in highly competitive habitats including soil. We show here a combinatorial antibacterial effect of these compounds, but also of prodigiosin mixed with other (bio)surfactants, against the soil-dwelling bacterium Corynebacterium glutamicum taken as a model target bacterium. Prodigiosin exerted a combinatorial inhibitory effect with all tested surfactants in a disk diffusion assay which was especially pronounced in combination with N-myristoyltyrosine. Minimal inhibitory and bactericidal concentrations (MIC and MBC) of the individual compounds were 2.56 μg/mL prodigiosin and 32 μg/mL N-myristoyltyrosine, and the MIC of prodigiosin was decreased by 3 orders of magnitude to 0.005 μg/mL in the presence of 16 μg/mL N-myristoyltyrosine, indicative of synergistic interaction. Investigation of bacterial survival revealed similar combinatorial effects; moreover, antagonistic effects were observed at higher compound concentrations. Finally, the investigation of microcolony formation under combined application of concentrations just below the MBC revealed heterogeneity of responses with cell death or delayed growth. In summary, this study describes the combinatorial antibacterial effects of microbial biomolecules, which may have ecological relevance by inhibiting cohabiting species, but shall furthermore inspire drug development in the combat of infectious disease.

摘要

细菌次生代谢产物是为了在共享栖息地中战胜竞争者而自然产生的,因此代表了抗生素发现的宝贵来源。将新发现的抗生素化合物转化为有效药物通常需要添加额外的表面活性剂成分用于药物配方。在这方面,自然界可能也提供了蓝图:由抗菌红色色素灵菌红素和生物表面活性剂 serrawettin W1 组成的两种化合物的混合物由细菌粘质沙雷氏菌自然产生,该细菌存在于包括土壤在内的高度竞争的栖息地中。我们在这里展示了这些化合物以及灵菌红素与其他(生物)表面活性剂混合后的组合抗菌作用,针对作为模型靶细菌的土壤居住的棒状杆菌属谷氨酸。灵菌红素在圆盘扩散测定中与所有测试的表面活性剂表现出组合抑制作用,与 N-豆蔻酰酪氨酸的组合尤为明显。单独化合物的最小抑菌和杀菌浓度(MIC 和 MBC)分别为 2.56 μg/mL 灵菌红素和 32 μg/mL N-豆蔻酰酪氨酸,并且在存在 16 μg/mL N-豆蔻酰酪氨酸的情况下,灵菌红素的 MIC 降低了 3 个数量级至 0.005 μg/mL,表明存在协同作用。对细菌存活的研究揭示了类似的组合作用;此外,在较高的化合物浓度下观察到拮抗作用。最后,在组合应用浓度低于 MBC 时对微菌落形成的研究表明,存在细胞死亡或生长延迟的异质性反应。总之,本研究描述了微生物生物分子的组合抗菌作用,这些作用可能通过抑制共栖物种而具有生态相关性,但在抗感染疾病的斗争中也将进一步激发药物开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b43b/6053208/0c4d74ffc141/pone.0200940.g001.jpg

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