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牙龈上皮稳态的关键要素在细菌相互作用。

Key Elements of Gingival Epithelial Homeostasis upon Bacterial Interaction.

机构信息

Department of Oral Health Sciences, College of Dental Medicine, Medical University of South Carolina, Charleston, SC, USA.

Department of Microbiology and Immunology, Medical University of South Carolina, Charleston, SC, USA.

出版信息

J Dent Res. 2021 Apr;100(4):333-340. doi: 10.1177/0022034520973012. Epub 2020 Nov 17.

Abstract

Epithelia are structurally integral elements in the fabric of oral mucosa with significant functional roles. Similarly, the gingival epithelium performs uniquely critical tasks in responding to a variety of external stimuli and dangers through the regulation of specific built-in molecular mechanisms in a context-dependent fashion at cellular levels. Gingival epithelial cells form an anatomic architecture that confers defense, robustness, and adaptation toward external aggressions, most critically to colonizing microorganisms, among other functions. Accordingly, recent studies unraveled previously uncharacterized response mechanisms in gingival epithelial cells that are constructed to rapidly exert biocidal effects against invader pathobiotic bacteria, such as , through small danger molecule signaling. The host-adapted bacteria, however, have developed adroit strategies to 1) exploit the epithelia as privileged growth niches and 2) chronically target cellular bactericidal and homeostatic metabolic pathways for successful bacterial persistence. As the overgrowth of colonizing microorganisms in the gingival mucosa can shift from homeostasis to dysbiosis or a diseased state, it is crucial to understand how the innate modulatory molecules are intricately involved in antibacterial pathways and how they shape susceptibility versus resistance in the epithelium toward pathogens. Thus, in this review, we highlight recent discoveries in gingival epithelial cell research in the context of bacterial colonizers. The current knowledge outlined here demonstrates the ability of epithelial cells to possess highly organized defense machineries, which can jointly regulate host-derived danger molecule signaling and integrate specific global responses against opportunistic bacteria to combat microbial incursion and maintain host homeostatic balance. These novel examples collectively suggest that the oral epithelia are equipped with a dynamically robust and interconnected defense system encompassing sensors and various effector molecules that arrange and achieve a fine-tuned and advanced response to diverse bacteria.

摘要

上皮组织是口腔黏膜结构完整性的基本组成部分,具有重要的功能作用。同样,牙龈上皮组织通过特定的内在分子机制,以依赖于细胞水平的特定方式,对各种外部刺激和危险做出独特的关键反应。牙龈上皮细胞形成了一种解剖结构,赋予了防御、坚固和适应外部侵袭的能力,尤其是对定植微生物的防御。因此,最近的研究揭示了牙龈上皮细胞中以前未被描述的反应机制,这些机制是为了快速发挥杀菌作用而构建的,以对抗入侵的病原菌,如 ,通过小危险分子信号。然而,宿主适应的细菌已经发展出巧妙的策略,一方面利用上皮组织作为有利的生长小生境,另一方面慢性靶向细胞杀菌和稳态代谢途径,以实现细菌的持续存在。由于定植微生物在牙龈黏膜中的过度生长可以从稳态转变为失调或疾病状态,因此了解先天调节分子如何错综复杂地参与抗菌途径,以及它们如何塑造上皮组织对病原体的易感性和抗性,是至关重要的。因此,在这篇综述中,我们强调了细菌定植背景下牙龈上皮细胞研究的最新发现。这里概述的现有知识表明,上皮细胞具有高度组织化的防御机制,能够共同调节宿主来源的危险分子信号,并整合针对机会性细菌的特定全局反应,以抵御微生物入侵并维持宿主的体内平衡。这些新的例子共同表明,口腔上皮组织配备了一个动态强大且相互关联的防御系统,包括传感器和各种效应分子,这些分子可以协调并实现对不同细菌的精细和先进的反应。

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