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一种新的小分子可特异性抑制致龋菌变异链球菌在多物种生物膜中的生长。

A new small molecule specifically inhibits the cariogenic bacterium Streptococcus mutans in multispecies biofilms.

机构信息

Department of Pediatric Dentistry, UAB School of Dentistry, Birmingham, AL 35294, USA.

出版信息

Antimicrob Agents Chemother. 2011 Jun;55(6):2679-87. doi: 10.1128/AAC.01496-10. Epub 2011 Mar 14.

Abstract

Streptococcus mutans is a major cariogenic bacterium. It has adapted to the biofilm lifestyle, which is essential for pathogenesis of dental caries. We aimed to identify small molecules that can inhibit cariogenic S. mutans and to discover lead structures that could give rise to therapeutics for dental caries. In this study, we screened a focused small-molecule library of 506 compounds. Eight small molecules which inhibited S. mutans at a concentration of 4 μM or less but did not affect cell growth or biofilm formation of commensal bacteria, represented by Streptococcus sanguinis and Streptococcus gordonii, in monospecies biofilms were identified. The active compounds share similar structural properties, which are characterized by a 2-aminoimidazole (2-AI) or 2-aminobenzimidazole (2-ABI) subunit. In multispecies biofilm models, the most active compound also inhibited cell survival and biofilm formation of S. mutans but did not affect commensal streptococci. This inhibitor downregulated the expression of six biofilm-associated genes, ftf, pac, relA, comDE, gbpB, and gtfB, in planktonic S. mutans cells, while it downregulated the expression of only ftf, pac, and relA in the biofilm cells of S. mutans. The most potent compound also inhibited production of two key adhesins of S. mutans, antigen I/II and glucosyltransferase (GTF). However, the compound did not alter the expression of the corresponding genes in both S. sanguinis and S. gordonii, indicating that it possesses a selective inhibitory activity against S. mutans.

摘要

变形链球菌是一种主要的致龋菌。它已经适应了生物膜生活方式,这对于龋齿的发病机制至关重要。我们的目的是鉴定能够抑制致龋变形链球菌的小分子,并发现可能导致龋齿治疗的先导结构。在这项研究中,我们筛选了一个 506 种化合物的小分子文库。鉴定出了 8 种小分子,它们在 4 μM 或更低的浓度下抑制变形链球菌,但不影响共生菌(以链球菌和戈登链球菌为代表)在单物种生物膜中的生长或生物膜形成。活性化合物具有相似的结构特性,其特征是含有 2-氨基咪唑(2-AI)或 2-氨基苯并咪唑(2-ABI)亚基。在多物种生物膜模型中,最有效的化合物也抑制了变形链球菌的细胞存活和生物膜形成,但不影响共生链球菌。这种抑制剂下调了浮游变形链球菌细胞中 6 个生物膜相关基因(ftf、pac、relA、comDE、gbpB 和 gtfB)的表达,而在变形链球菌的生物膜细胞中仅下调了 ftf、pac 和 relA 的表达。最有效的化合物还抑制了变形链球菌的两种关键黏附素(抗原 I/II 和葡糖基转移酶(GTF))的产生。然而,该化合物没有改变链球菌和戈登链球菌中相应基因的表达,表明它对变形链球菌具有选择性抑制活性。

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