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Nanosized Building Blocks for Customizing Novel Antibiofilm Approaches

机译:用于定制新型抗生物膜方法的纳米构建基块

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摘要

Recent advances in nanotechnology provide unparalleled flexibility to control the composition, size, shape, surface chemistry, and functionality of materials. Currently available engineering approaches allow precise synthesis of nanocompounds (e.g., nanoparticles, nanostructures, nanocrystals) with both top-down and bottom-up design principles at the submicron level. In this context, these “nanoelements” (NEs) or “nanosized building blocks” can 1) generate new nanocomposites with antibiofilm properties or 2) be used to coat existing surfaces (e.g., teeth) and exogenously introduced surfaces (e.g., restorative or implant materials) for prevention of bacterial adhesion and biofilm formation. Furthermore, functionalized NEs 3) can be conceived as nanoparticles to carry and selectively release antimicrobial agents after attachment or within oral biofilms, resulting in their disruption. The latter mechanism includes “smart release” of agents when triggered by pathogenic microenvironments (e.g., acidic pH or low oxygen levels) for localized and controlled drug delivery to simultaneously kill bacteria and dismantle the biofilm matrix. Here we discuss inorganic, metallic, polymeric, and carbon-based NEs for their outstanding chemical flexibility, stability, and antibiofilm properties manifested when converted into bioactive materials, assembled on-site or delivered at biofilm-surface interfaces. Details are provided on the emerging concept of the rational design of NEs and recent technological breakthroughs for the development of a new generation of nanocoatings or functional nanoparticles for biofilm control in the oral cavity.
机译:纳米技术的最新进展为控制材料的组成,尺寸,形状,表面化学和功能提供了无与伦比的灵活性。当前可用的工程方法允许以自上而下和自下而上的设计原理在亚微米水平上精确合成纳米化合物(例如,纳米颗粒,纳米结构,纳米晶体)。在这种情况下,这些“纳米元素”或“纳米尺寸的构建基块”可以1)生成具有抗生物膜特性的新纳米复合材料,或2)用于涂覆现有表面(例如牙齿)和外源引入的表面(例如修复性或植入性)材料),以防止细菌粘附和生物膜形成。此外,功能化的NE 3)可以被认为是纳米颗粒,其在附着后或在口腔生物膜内携带并选择性地释放抗微生物剂,从而导致其破坏。后一种机制包括当由致病的微环境(例如酸性pH或低氧水平)触发时,试剂的“智能释放”,用于局部和受控的药物输送,以同时杀死细菌并拆除生物膜基质。在这里,我们讨论了无机,金属,聚合物和碳基NE的优异化学柔韧性,稳定性和抗生物膜特性,这些特性在转化为生物活性材料,现场组装或在生物膜表面界面处传递时表现出来。详细介绍了NE的合理设计的新兴概念,以及用于开发用于控制口腔中生物膜的新一代纳米涂层或功能纳米颗粒的最新技术突破。

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