Therapeutic Strategies Targeting Cariogenic Biofilm Microenvironment.

Q1 Medicine Advances in Dental Research Pub Date : 2018-02-01 DOI:10.1177/0022034517736497
Y Liu, Z Ren, G Hwang, H Koo
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引用次数: 53

Abstract

Cariogenic biofilms are highly structured microbial communities embedded in an extracellular matrix, a multifunctional scaffold that is essential for the existence of the biofilm lifestyle and full expression of virulence. The extracellular matrix provides the physical and biological properties that enhance biofilm adhesion and cohesion, as well as create a diffusion-modulating milieu, protecting the resident microbes and facilitating the formation of localized acidic pH niches. These biochemical properties pose significant challenges for the development of effective antibiofilm therapeutics to control dental caries. Conventional approaches focusing solely on antimicrobial activity or enhancing remineralization may not achieve maximal efficacy within the complex biofilm microenvironment. Recent approaches disrupting the biofilm microbial community and the microenvironment have emerged, including specific targeting of cariogenic pathogens, modulation of biofilm pH, and synergistic combination of bacterial killing and matrix degradation. Furthermore, new "smart" nanotechnologies that trigger drug release or activation in response to acidic pH are being developed that could enhance the efficacy of current and prospective chemical modalities. Therapeutic strategies that can locally disrupt the pathogenic niche by targeting the biofilm structure and its microenvironment to eliminate the embedded microorganism and facilitate the action of remineralizing agents may lead to enhanced and precise anticaries approaches.

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针对致龋性生物膜微环境的治疗策略
蛀牙生物膜是嵌入在细胞外基质中的高度结构化的微生物群落,这是一种多功能支架,对生物膜生活方式的存在和毒力的充分表达至关重要。细胞外基质提供了物理和生物特性,增强了生物膜的粘附性和凝聚力,并创造了扩散调节环境,保护了常驻微生物,促进了局部酸性pH位的形成。这些生物化学特性对开发有效的抗生素膜疗法来控制龋齿提出了重大挑战。在复杂的生物膜微环境中,仅关注抗菌活性或增强再矿化的传统方法可能无法达到最大功效。最近出现了破坏生物膜微生物群落和微环境的方法,包括特异性靶向致龋病原体,调节生物膜pH值,以及细菌杀死和基质降解的协同组合。此外,新的“智能”纳米技术正在开发中,它可以触发药物释放或激活,以响应酸性pH值,从而提高当前和未来化学模式的功效。通过靶向生物膜结构及其微环境来局部破坏病原生态位以消除嵌入的微生物并促进再矿化剂的作用的治疗策略可能会导致增强和精确的抗药方法。
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来源期刊
Advances in Dental Research
Advances in Dental Research Medicine-Medicine (all)
CiteScore
8.20
自引率
0.00%
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0
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