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反式-法呢醇,一种靶向细胞膜的倍半萜烯,对变形链球菌生理特性及其在混合种口腔生物膜内生存能力的影响。

Influences of trans-trans farnesol, a membrane-targeting sesquiterpenoid, on Streptococcus mutans physiology and survival within mixed-species oral biofilms.

机构信息

Department of Preventive Dentistry, School of Dentistry, Chonbuk National University, Jeonju 561756, Republic of Korea.

出版信息

Int J Oral Sci. 2011 Apr;3(2):98-106. doi: 10.4248/IJOS11038.

Abstract

Trans-trans farnesol (tt-farnesol) is a bioactive sesquiterpene alcohol commonly found in propolis (a beehive product) and citrus fruits, which disrupts the ability of Streptococcus mutans (S. mutans) to form virulent biofilms. In this study, we investigated whether tt-farnesol affects cell-membrane function, acid production and/or acid tolerance by planktonic cells and biofilms of S. mutans UA159. Furthermore, the influence of the agent on S. mutans gene expression and ability to form biofilms in the presence of other oral bacteria (Streptococcus oralis (S. oralis) 35037 and Actinomyces naeslundii (A. naeslundii) 12104) was also examined. In general, tt-farnesol (1 mmol x L(-1)) significantly increased the membrane proton permeability and reduced glycolytic activity of S. mutans in the planktonic state and in biofilms (P < 0.05). Moreover, topical applications of 1 mmol x L(-1) tt-farnesol twice daily (1 min exposure/treatment) reduced biomass accumulation and prevented ecological shifts towards S. mutans dominance within mixed-species biofilms after introduction of 1% sucrose. S. oralis (a non-cariogenic organism) became the major species after treatments with tt-farnesol, whereas vehicle-treated biofilms contained mostly S. mutans (>90% of total bacterial population). However, the agent did not affect significantly the expression of S. mutans genes involved in acidogenicity, acid tolerance or polysaccharide synthesis in the treated biofilms. Our data indicate that tt-farnesol may affect the competitiveness of S. mutans in a mixed-species environment by primarily disrupting the membrane function and physiology of this bacterium. This naturally occurring terpenoid could be a potentially useful adjunctive agent to the current anti-biofilm/anti-caries chemotherapeutic strategies.

摘要

反式法呢醇(tt-法呢醇)是一种常见于蜂胶(蜂巢产品)和柑橘类水果中的生物活性倍半萜醇,可破坏变形链球菌(S. mutans)形成毒力生物膜的能力。在这项研究中,我们研究了 tt-法呢醇是否会影响浮游细胞和 S. mutans UA159 生物膜的细胞膜功能、产酸和/或耐酸能力。此外,还研究了该试剂对 S. mutans 基因表达和在存在其他口腔细菌(口腔链球菌(S. oralis)35037 和内氏放线菌(A. naeslundii)12104)时形成生物膜的能力的影响。总的来说,tt-法呢醇(1mmol·L-1)显著增加了浮游状态和生物膜中 S. mutans 的膜质子通透性和糖酵解活性(P<0.05)。此外,每天两次局部应用 1mmol·L-1 tt-法呢醇(每次 1 分钟暴露/处理)可减少生物量积累,并防止在引入 1%蔗糖后混合物种生物膜中 S. mutans 优势的生态转变。tt-法呢醇处理后,非致龋菌口腔链球菌(S. oralis)成为主要物种,而载体处理的生物膜主要含有 S. mutans(总细菌种群的>90%)。然而,该试剂并未显著影响处理过的生物膜中与产酸、耐酸或多糖合成相关的 S. mutans 基因的表达。我们的数据表明,tt-法呢醇可能通过主要破坏该细菌的膜功能和生理学来影响混合物种环境中 S. mutans 的竞争力。这种天然萜类化合物可能是当前抗生物膜/抗龋化学治疗策略的有用辅助剂。

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