多种成分有助于唾液抑制流感病毒的能力。

M. White, E. Helmerhorst, A. Ligtenberg, Marshall Karpel, T. Tecle, Walter L. Siqueira, Frank G. Oppenheim, K. Hartshorn
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引用次数: 83

摘要

唾液是抵抗呼吸道病毒感染的潜在重要屏障,但其作用机制尚未得到很好的研究。方法体外检测全唾液、特定唾液腺分泌物和纯化唾液蛋白对甲型流感病毒(IAV)株的抗病毒活性。结果基于血凝抑制和中和试验,健康供者的全唾液、腮腺或下颌/舌下分泌物均能抑制IAV。这与人类免疫缺陷病毒(HIV)不同,据报道,HIV只有下颌下/舌下分泌物具有抑制性。在纯化的唾液蛋白中,MUC5B、清道夫受体富半胱氨酸糖蛋白340(唾液gp-340)、组抑素和人中性粒细胞防御素(HNPs)在全唾液中存在的浓度下抑制IAV。相反,一些丰富的唾液蛋白(酸性富含脯氨酸的蛋白和淀粉酶)没有活性,其他一些已知的抗HIV活性较少的唾液蛋白(如血栓反应蛋白或血清白细胞蛋白酶抑制剂)也没有活性。全唾液和MUC5B不抑制IAV的神经氨酸酶活性,而神经氨酸酶抑制剂奥司他韦增强了MUC5B的病毒中和和聚集活性。因此,MUC5B通过为病毒血凝素提供唾液酸配体来抑制IAV。组他汀类药物的作用机制有待进一步研究。结论唾液是抵抗IAV感染的一个重要的初始屏障,并强调了口腔分泌物防御宿主活性的复杂性。有趣的是,唾液对IAV和HIV的抗病毒活性在特定腺体分泌物和抑制蛋白方面有所不同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multiple components contribute to ability of saliva to inhibit influenza viruses.
INTRODUCTION Saliva is a potentially important barrier against respiratory viral infection but its mechanism of action is not well studied. METHODS We tested the antiviral activities of whole saliva, specific salivary gland secretions, and purified salivary proteins against strains of influenza A virus (IAV) in vitro. RESULTS Whole saliva or parotid or submandibular/sublingual secretions from healthy donors inhibited IAV based on hemagglutination inhibition and neutralization assays. This differs from human immunodeficiency virus (HIV), for which only submandibular/sublingual secretions are reported to be inhibitory. Among purified salivary proteins, MUC5B, scavenger receptor cysteine-rich glycoprotein 340 (salivary gp-340), histatins, and human neutrophil defensins (HNPs) inhibited IAV at the concentrations present in whole saliva. In contrast, some abundant salivary proteins (acidic proline-rich proteins and amylase) had no activity, nor did several other less abundant salivary proteins with known activity against HIV (e.g. thrombospondin or serum leukocyte protease inhibitor). Whole saliva and MUC5B did not inhibit neuraminidase activity of IAV and viral neutralizing and aggregating activity of MUC5B was potentiated by the neuraminidase inhibitor oseltamivir. Hence, MUC5B inhibits IAV by presenting a sialic acid ligand for the viral hemagglutinin. The mechanism of action of histatins requires further study. CONCLUSIONS These findings indicate that saliva represents an important initial barrier to IAV infection and underline the complexity of host defense activity of oral secretions. Of interest, antiviral activity of saliva against IAV and HIV differs in terms of specific glandular secretions and proteins that are inhibitory.
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