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An Insight into Advanced Approaches for Photosensitizer Optimization in Endodontics—A Critical Review

机译:牙髓学中光敏剂优化的高级方法的见解—综述

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摘要

Apical periodontitis is a biofilm-mediated disease; therefore, an antimicrobial approach is essential to cure or prevent its development. In the quest for efficient strategies to achieve this objective, antimicrobial photodynamic therapy (aPDT) has emerged as an alternative to classical endodontic irrigation solutions and antibiotics. The aim of the present critical review is to summarize the available evidence on photosensitizers (PSs) which has been confirmed in numerous studies from diverse areas combined with several antimicrobial strategies, as well as emerging options in order to optimize their properties and effects that might be translational and useful in the near future in basic endodontic research. Published data notably support the need for continuing the search for an ideal endodontic photosensitizer, that is, one which acts as an excellent antimicrobial agent without causing toxicity to the human host cells or presenting the risk of tooth discoloration. The current literature on experimental studies mainly relies on assessment of mixed disinfection protocols, combining approaches which are already available with aPDT as an adjunct therapy. In this review, several approaches concerning aPDT efficiency are appraised, such as the use of bacteriophages, biopolymers, drug and light delivery systems, efflux pump inhibitors, negative pressure systems, and peptides. The authors also analyzed their combination with other approaches for aPDT improvement, such as sonodynamic therapy. All of the aforementioned techniques have already been tested, and we highlight the biological challenges of each formulation, predicting that the collected information may encourage the development of other effective photoactive materials, in addition to being useful in endodontic basic research. Moreover, special attention is dedicated to studies on detailed conditions, aPDT features with a focus on PS enhancer strategies, and the respective final antimicrobial outcomes. From all the mentioned approaches, the two which are most widely discussed and which show the most promising outcomes for endodontic purposes are drug delivery systems (with strong development in nanoparticles) and PS solubilizers.
机译:根尖周炎是生物膜介导的疾病;因此,抗菌方法对于治愈或预防其发展至关重要。在寻求实现该目标的有效策略的过程中,出现了抗菌光动力疗法(aPDT),作为传统牙髓冲洗液和抗生素的替代方法。本次重要综述的目的是总结光敏剂(PSs)的现有证据,该证据已在来自不同领域的众多研究中与几种抗菌策略相结合,并出现了各种选择,以优化其光敏剂的性能和效果。在不久的将来可用于基础牙髓研究。公开的数据尤其支持继续寻找理想的牙髓光敏剂的需求,即一种能作为出色的抗微生物剂而不会对人宿主细胞产生毒性或不会引起牙齿变色的光敏剂。当前关于实验研究的文献主要依靠对混合消毒方案的评估,并结合已经将aPDT作为辅助疗法使用的方法。在这篇综述中,评估了几种有关aPDT效率的方法,例如使用噬菌体,生物聚合物,药物和光传输系统,外排泵抑制剂,负压系统和肽。作者还分析了它们与其他改善aPDT的方法的组合,例如声动力疗法。所有上述技术都已经过测试,我们重点介绍了每种制剂的生物学挑战,并预测所收集的信息除可用于牙髓基础研究外,还可以鼓励开发其他有效的光敏材料。此外,特别注意研究的具体条件,aPDT特性(以PS增强剂策略为重点)以及各自的最终抗菌效果。在所有提到的方法中,药物输送系统(在纳米颗粒中有很强的发展)和PS增溶剂是被广泛讨论并显示出最有希望的牙髓治疗效果的两种方法。

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