上皮抗微生物肽:口腔的守护者。

International Journal of Peptides Pub Date : 2014-01-01 Epub Date: 2014-11-11 DOI:10.1155/2014/370297
Mayank Hans, Veenu Madaan Hans
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引用次数: 68

摘要

牙龈上皮提供了第一道防线,从微生物存在于牙菌斑。它不仅提供了一个机械屏障,而且还具有主动免疫功能。牙龈上皮细胞通过产生一系列抗菌肽来保护宿主免受口腔病原体的侵害,从而参与先天免疫。这些上皮抗菌肽(EAPs)包括β-防御素家族、抗菌肽(LL-37)、钙保护蛋白和肾上腺髓质素。虽然有些在牙龈上皮细胞中组成性表达,但其他的则在暴露于微生物损伤时诱导。这些eap很可能在决定口腔疾病的发生和发展中起作用。EAPs是广谱抗菌剂,具有不同但重叠的活性范围。除了抗菌活性外,它们还在宿主组织中发挥其他重要作用。其中一些,例如,β-防御素,对免疫细胞具有趋化作用。其他的,如钙保护蛋白对伤口愈合和细胞增殖很重要。肾上腺髓质素是一种多功能肽,其生物学作用广泛存在于多种组织中。它不仅是一种有效的血管扩张剂,而且对内分泌也有一些影响。详细了解这些eap的各种生物作用可以为我们提供有关其作为治疗剂的效用的有用信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Epithelial antimicrobial peptides: guardian of the oral cavity.

Epithelial antimicrobial peptides: guardian of the oral cavity.

Epithelial antimicrobial peptides: guardian of the oral cavity.

Epithelial antimicrobial peptides: guardian of the oral cavity.

Gingival epithelium provides first line of defence from the microorganisms present in dental plaque. It not only provides a mechanical barrier but also has an active immune function too. Gingival epithelial cells participate in innate immunity by producing a range of antimicrobial peptides to protect the host against oral pathogens. These epithelial antimicrobial peptides (EAPs) include the β-defensin family, cathelicidin (LL-37), calprotectin, and adrenomedullin. While some are constitutively expressed in gingival epithelial cells, others are induced upon exposure to microbial insults. It is likely that these EAPs have a role in determining the initiation and progression of oral diseases. EAPs are broad spectrum antimicrobials with a different but overlapping range of activity. Apart from antimicrobial activity, they participate in several other crucial roles in host tissues. Some of these, for instance, β-defensins, are chemotactic to immune cells. Others, such as calprotectin are important for wound healing and cell proliferation. Adrenomedullin, a multifunctional peptide, has its biological action in a wide range of tissues. Not only is it a potent vasodilator but also it has several endocrine effects. Knowing in detail the various bioactions of these EAPs may provide us with useful information regarding their utility as therapeutic agents.

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