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人类 Q 热时间剂量反应模型。

A human time dose response model for Q fever.

机构信息

Public Health England, Porton, Wiltshire SP4 0JG, United Kingdom.

University of Southampton, Hampshire SO17 1BJ, United Kingdom.

出版信息

Epidemics. 2017 Dec;21:30-38. doi: 10.1016/j.epidem.2017.06.001. Epub 2017 Jun 15.

Abstract

The causative agent of Q fever, Coxiella burnetii, has the potential to be developed for use in biological warfare and it is classified as a bioterrorism threat agent by the Centers for Disease Control and Prevention (CDC) and as a category B select agent by the National Institute of Allergy and Infectious Diseases (NIAID). In this paper we focus on the in-host properties that arise when an individual inhales a dose of C. burnetii and establish a human time-dose response model. We also propagate uncertainty throughout the model allowing us to robustly estimate key properties including the infectious dose and incubation period. Using human study data conducted in the 1950's we conclude that the dose required for a 50% probability of infection is about 15 organisms, and that one inhaled organism of C. burnetti can cause infection in 5% of the exposed population. In addition, we derive a low dose incubation period of 17.6 days and an extracellular doubling time of half a day. In conclusion this paper provides a framework for detailing the parameters and approaches that would be required for risk assessments associated with exposures to C. burnetii that might cause human infection.

摘要

导致 Q 热的病原体,贝氏柯克斯体,有可能被开发用于生物战争,并且被疾病控制和预防中心(CDC)列为生物恐怖威胁剂,被国家过敏和传染病研究所(NIAID)列为 B 类选择剂。在本文中,我们专注于个体吸入一定剂量的 C. burnetii 时在体内产生的特性,并建立一个人类时间剂量反应模型。我们还在整个模型中传播不确定性,使我们能够稳健地估计关键特性,包括感染剂量和潜伏期。利用 20 世纪 50 年代进行的人类研究数据,我们得出结论,感染概率为 50%所需的剂量约为 15 个生物体,而吸入的 C. burnetti 生物体有 5%的暴露人群会导致感染。此外,我们得出潜伏期的低剂量为 17.6 天,细胞外倍增时间为半天。总之,本文提供了一个框架,详细说明了与可能导致人类感染的 C. burnetii 暴露相关的风险评估所需的参数和方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b6e/5729200/591cb84e6ce3/gr1.jpg

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