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针对严重急性呼吸综合征冠状病毒的新型抗病毒药物、疫苗及经典公共卫生干预措施。

New antiviral drugs, vaccines and classic public health interventions against SARS coronavirus.

作者信息

Oxford John S, Balasingam Shobana, Chan Charlotte, Catchpole Andrew, Lambkin Robert

机构信息

Retroscreen Virology Ltd, Centre for Infectious Diseases, Barts, UK.

出版信息

Antivir Chem Chemother. 2005;16(1):13-21. doi: 10.1177/095632020501600102.

Abstract

Severe acute respiratory syndrome (SARS) is caused by one of two recently discovered coronaviruses. The virus is emergent from South East (SE) Asian mammals: either the civet cat, a related species or a rat species. The virus has a long incubation period and low reproduction number (R0 value) and hence the first outbreak in 2004 was controlled by hygiene and quarantine. However, the healthcare system was compromised and the economic cost was extremely high. Fortunately, the virus is easily cultivated in Vero E6 cells and therefore the search for new antivirals and vaccines was initiated within weeks of the discovery of the virus using classic techniques of cell culture and electron microscopy. Molecular diagnostics facilitated rapid and accurate diagnosis, a key factor in containing the outbreak. The broad-spectrum molecule ribavirin was used in SE Asia in infected patients alongside corticosteroids. In retrospect, many patients survived due to careful nursing. The only currently accepted intervention is interferon. Coronavirus replicon systems should facilitate rapid screening of new inhibitors and the complex mechanism of viral replication will ensure that drugs are developed against at least five molecular targets, in particular the viral protease.

摘要

严重急性呼吸综合征(SARS)由最近发现的两种冠状病毒之一引起。该病毒源自东南亚哺乳动物:要么是果子狸、一种相关物种,要么是鼠类物种。该病毒潜伏期长且繁殖数低(R0值),因此2004年的首次疫情通过卫生和检疫得到了控制。然而,医疗系统受到了损害,经济成本极高。幸运的是,该病毒很容易在Vero E6细胞中培养,因此在发现该病毒后的几周内,就利用细胞培养和电子显微镜的经典技术开始了寻找新抗病毒药物和疫苗的工作。分子诊断有助于快速准确的诊断,这是控制疫情的关键因素。在东南亚,广谱分子利巴韦林与皮质类固醇一起用于感染患者。回顾过去,许多患者因精心护理而存活下来。目前唯一被认可的干预措施是干扰素。冠状病毒复制子系统应有助于快速筛选新的抑制剂,病毒复制的复杂机制将确保开发出针对至少五个分子靶点的药物,特别是病毒蛋白酶。

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