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探索水痘带状疱疹病毒传播和再激活的季节性驱动因素。

Exploring the Seasonal Drivers of Varicella Zoster Virus Transmission and Reactivation.

作者信息

Bakker Kevin M, Eisenberg Marisa C, Woods Robert, Martinez Micaela E

出版信息

Am J Epidemiol. 2021 Sep 1;190(9):1814-1820. doi: 10.1093/aje/kwab073.

Abstract

Varicella zoster virus (VZV) is a herpesvirus that causes chickenpox and shingles. The biological mechanisms underpinning the multidecadal latency of VZV in the body and subsequent viral reactivation-which occurs in approximately 30% of individuals-are largely unknown. Because chickenpox and shingles are endemic worldwide, understanding the relationship between VZV transmission and reactivation is important for informing disease treatment and control. While chickenpox is a vaccine-preventable childhood disease with a rich legacy of research, shingles is not a notifiable disease in most countries. To date, population-level studies of shingles have had to rely on small-scale hospital or community-level data sets. Here, we examined chickenpox and shingles notifications from Thailand and found strong seasonal incidence in both diseases, with a 3-month lag between peak chickenpox transmission season and peak shingles reactivation. We tested and fitted 14 mathematical models examining the biological drivers of chickenpox and shingles over an 8-year period to estimate rates of VZV transmission, reactivation, and immunity-boosting, wherein reexposure to VZV boosts VZV-specific immunity to reinforce protection against shingles. The models suggested that the seasonal cycles of chickenpox and shingles have different underlying mechanisms, with ambient levels of ultraviolet radiation being correlated with shingles reactivation.

摘要

水痘带状疱疹病毒(VZV)是一种引起水痘和带状疱疹的疱疹病毒。VZV在体内数十年潜伏期以及随后病毒再激活(约30%的个体中会发生)的生物学机制在很大程度上尚不清楚。由于水痘和带状疱疹在全球范围内均为地方性疾病,了解VZV传播与再激活之间的关系对于指导疾病治疗和控制至关重要。虽然水痘是一种可通过疫苗预防的儿童疾病且有丰富的研究历史,但带状疱疹在大多数国家并非法定报告疾病。迄今为止,带状疱疹的人群水平研究不得不依赖小规模的医院或社区层面数据集。在此,我们研究了来自泰国的水痘和带状疱疹报告,发现这两种疾病均有明显的季节性发病,水痘传播季节高峰与带状疱疹再激活高峰之间有3个月的时间间隔。我们测试并拟合了14个数学模型,以研究8年期间水痘和带状疱疹的生物学驱动因素,从而估计VZV的传播、再激活和免疫增强率,其中再次接触VZV可增强VZV特异性免疫力以加强对带状疱疹的保护。这些模型表明,水痘和带状疱疹的季节性周期有不同的潜在机制,紫外线辐射的环境水平与带状疱疹再激活相关。

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