首页> 外文期刊>Journal of Endodontics: Official Journal of American Association of Endodontists >Redefining the persistent infection in root canals: possible role of biofilm communities.
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Redefining the persistent infection in root canals: possible role of biofilm communities.

机译:重新定义根管持续感染:生物膜群落的可能作用。

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摘要

Current concepts suggest that persisting infections subsequent to endodontic therapy are caused by one or two bacterial species that are "too robust" to be eliminated by conventional treatment measures. As a consequence, numerous studies are exploring the characteristics of these "most" resistant organisms to define an effective treatment strategy to eradicate them from root canals. By taking an ecological perspective, the main objective of this review is to present evidence that the nature of persisting endodontic infections depends not on the robustness of the organisms in the infected site, but on their capability of adapting their physiology to the new environmental conditions set by the treatment. Changes in the environment, such as an increase in pH by calcium hydroxide or the effect of antimicrobials, are capable of triggering genetic cascades that modify the physiological characteristics of bacterial cells. Surface adherence by bacteria to form biofilms is a good example of bacterial adaptationand one that is pertinent to endodontic infections. Increasing information is now available on the existence of polymicrobial biofilm communities on root canal walls, coupled with new data showing that the adaptive mechanisms of bacteria in these biofilms are significantly augmented for increased survival. This ecological view on the persisting infection problem in endodontics suggests that the action of individual species in persisting endodontic infections is secondary when compared to the adaptive changes of a polymicrobial biofilm community undergoing physiological and genetic changes in response to changes in the root canal environment.
机译:当前的概念表明,牙髓治疗后持续的感染是由一种或两种细菌所引起的,它们“太健壮”而无法通过常规治疗措施消除。结果,许多研究正在探索这些“最”抗性生物的特征,以定义一种有效的治疗策略来从根管中根除它们。从生态学的角度来看,本综述的主要目的是提供证据,证明牙髓持续感染的性质不取决于感染部位的生物的健壮性,而是取决于其适应新环境条件的生理能力。通过治疗。环境变化,例如氢氧化钙引起的pH值升高或抗微生物剂的作用,能够触发遗传级联反应,从而改变细菌细胞的生理特性。细菌在表面形成生物膜的粘附是细菌适应的一个很好的例子,并且与牙髓感染有关。现在,有关根管壁上存在多种微生物生物膜群落的信息越来越多,再加上新的数据表明,这些生物膜中细菌的适应性机制显着增强,以提高生存率。关于牙髓病持续感染问题的这种生态学观点表明,与多菌种生物膜群落的适应性变化(响应根管环境变化而经历生理和遗传变化)相比,单个物种在牙髓持续感染中的作用是次要的。

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