Targeting cariogenic pathogens and promoting competitiveness of commensal bacteria with a novel pH-responsive antimicrobial peptide.

IF 3.7 2区 医学 Q2 MICROBIOLOGY Journal of Oral Microbiology Pub Date : 2023-01-01 DOI:10.1080/20002297.2022.2159375
Wentao Jiang, Zhuo Xie, Shuheng Huang, Qiting Huang, Lingling Chen, Xianling Gao, Zhengmei Lin
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引用次数: 4

Abstract

Novel ecological antimicrobial approaches to dental caries focus on inhibiting cariogenic pathogens while enhancing the growth of health-associated commensal communities or suppressing cariogenic virulence without affecting the diversity of oral microbiota, which emphasize the crucial role of establishing a healthy microbiome in caries prevention. Considering that the acidified cariogenic microenvironment leads to the dysbiosis of microecology and demineralization of enamel, exploiting the acidic pH as a bioresponsive trigger to help materials and medications target cariogenic pathogens is a promising strategy to develop novel anticaries approaches. In this study, a pH-responsive antimicrobial peptide, LH12, was designed utilizing the pH-sensitivity of histidine, which showed higher cationicity and stronger interactions with bacterial cytomembranes at acidic pH. Streptococcus mutans was used as the in vitro caries model to evaluate the inhibitory effects of LH12 on the cariogenic properties, such as biofilm formation, biofilm morphology, acidurance, acidogenicity, and exopolysaccharides synthesis. The dual-species model of Streptococcus mutans and Streptococcus gordonii was established in vitro to evaluate the regulation effects of LH12 on the mixed species microbial community containing both cariogenic bacteria and commensal bacteria. LH12 suppressed the cariogenic properties and regulated the bacterial composition to a healthier condition through a dual-functional mechanism. Firstly, LH12-targeted cariogenic pathogens in response to the acidified microenvironment and suppressed the cariogenic virulence by inhibiting the expression of multiple virulence genes and two-component signal transduction systems. Additionally, LH12 elevated H2O2 production of the commensal bacteria and subsequently improved the ecological competitiveness of the commensals. The dual-functional mechanism made LH12 a potential bioresponsive approach to caries management.

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一种新的ph反应抗菌肽靶向龋齿致病菌并促进共生菌的竞争。
新型的生态抗菌龋病治疗方法侧重于在不影响口腔微生物群多样性的情况下抑制蛀牙病原体,同时促进与健康相关的共生群落的生长或抑制蛀牙毒力,这强调了建立健康的微生物群在预防蛀牙中的重要作用。考虑到牙釉质微环境酸化导致牙釉质微生态失调和脱矿,利用酸性pH作为生物反应触发来帮助材料和药物靶向牙釉质病原体是一种很有前景的新型抗龋方法。本研究利用组氨酸对ph的敏感性,设计了一种ph响应型抗菌肽LH12,在酸性ph下,LH12具有更高的阳离子性,与细菌细胞膜的相互作用更强。以变形链球菌为体外龋模型,评价LH12对生物膜形成、生物膜形态、酸度、致酸性和外多糖合成等致龋特性的抑制作用。体外建立变形链球菌和哥氏链球菌双种模型,评价LH12对既有蛀牙菌又有共生菌的混合种微生物群落的调节作用。LH12通过双功能机制抑制龋齿特性,调节细菌组成,使其更健康。首先,lh12通过抑制多种毒力基因和双组分信号转导系统的表达,针对酸化微环境的致龋致病菌,抑制致龋毒力。此外,LH12提高了共生菌的H2O2产量,从而提高了共生菌的生态竞争力。这种双重功能机制使LH12成为一种潜在的龋齿管理生物响应方法。
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来源期刊
CiteScore
8.00
自引率
4.40%
发文量
52
审稿时长
12 weeks
期刊介绍: As the first Open Access journal in its field, the Journal of Oral Microbiology aims to be an influential source of knowledge on the aetiological agents behind oral infectious diseases. The journal is an international forum for original research on all aspects of ''oral health''. Articles which seek to understand ''oral health'' through exploration of the pathogenesis, virulence, host-parasite interactions, and immunology of oral infections are of particular interest. However, the journal also welcomes work that addresses the global agenda of oral infectious diseases and articles that present new strategies for treatment and prevention or improvements to existing strategies. Topics: ''oral health'', microbiome, genomics, host-pathogen interactions, oral infections, aetiologic agents, pathogenesis, molecular microbiology systemic diseases, ecology/environmental microbiology, treatment, diagnostics, epidemiology, basic oral microbiology, and taxonomy/systematics. Article types: original articles, notes, review articles, mini-reviews and commentaries
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