Péptidos antimicrobianos y mediadores lipídicos: rol en las enfermedades periodontales

María A. Michea , Constanza Briceño , Marcela Alcota , Fermín E. González
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引用次数: 2

Abstract

Currently, there is consensus that the damage of the tooth support tissues that occurs during periodontitis is a complex mechanism, in which the presence of specific periodontal pathogens is necessary, but not sufficient, to fully explain the extent and severity of the observed periodontal destruction. Moreover, the destruction of periodontal support tissue is largely the effect of the imbalance in the patient immune response, triggered by periodontal pathogen-derived antigens and virulence factors. The immune response elicited by periodontal pathogenic bacteria includes mechanisms associated with both innate and adaptive responses, where the role of antimicrobial peptides and lipid mediators are related to these two arms of immunity, and have not been fully elucidated in relation to their mechanisms of action against periodontal pathogens. In this review, a discussion is presented on the characteristics of these molecules and their role in periodontal disease in relation to both protection and destruction of tooth supporting tissue during periodontal infection. The relevance of considering these mediators within the complex scenario of the immune response during periodontal diseases is also highlighted, since they are a fundamental part of the host immune response. Periodontal diseases should be analysed in a broader perspective, where the study of these types of molecules involved in the immune response of periodontal tissues, may help to develop new therapeutic approaches to periodontal diseases in the future.

抗菌肽和脂质介质:在牙周病中的作用
目前,人们一致认为牙周炎期间发生的牙齿支持组织损伤是一个复杂的机制,其中特定牙周病原体的存在是必要的,但不足以充分解释观察到的牙周破坏的程度和严重程度。此外,牙周支持组织的破坏在很大程度上是患者免疫反应不平衡的结果,由牙周病原体来源的抗原和毒力因素引发。牙周致病菌引发的免疫反应包括先天和适应性反应相关的机制,其中抗菌肽和脂质介质的作用与这两种免疫反应有关,但它们对牙周病原体的作用机制尚未完全阐明。本文就这些分子的特征及其在牙周感染过程中保护和破坏牙齿支持组织中的作用进行综述。在牙周病期间免疫反应的复杂情况下考虑这些介质的相关性也被强调,因为它们是宿主免疫反应的基本组成部分。牙周病应该从更广阔的角度进行分析,研究这些参与牙周组织免疫反应的分子类型,可能有助于在未来开发新的牙周病治疗方法。
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