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New approach to environmental investigation of an explosive legionnaires′ disease outbreak in Spain: early identification of potential risk sources by rapid Legionella spp immunosensing technique

机译:西班牙爆炸性军团疾病疫情的环境调查的新方法:快速军团SPP免疫抑制技术早期识别潜在风险来源

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An explosive outbreak of Legionnaires' disease (LD) was identified on 11 December 2015 in Manzanares, Ciudad Real, Spain, and was declared closed by 03 February 2016. The number of declared cases was 593 with 277 confirmed cases so that it can be considered as one of the outbreaks with highest attack rate. This rate could be attributed to the ageing of the population, among others, in addition to various risk factors and habits, and the meteorological conditions (thermal inversion) maintained in this municipality at the time. The Public Health Services succeeded in breaking the bacterial transmission. Several facilities were early identified by microbiological analysis, including a cooling tower and a decorative fountain, as possible infectious sources. Rapid analytical techniques for rapid Legionella detection and the shutdown and preventative closure of positive installations have been considered key elements in the control of this outbreak. Rapid microbiological analysis helped to the early identification of potential risk sources in a Legionnaires′ disease outbreak, reducing decision-making processes according to the actual needs of the intervention in public health and shortening the exposure of the population. Protocolized and immediate intervention in an outbreak is a crucial issue to reduce their effects on public health. For this, identification and control of the suspicious sources able to disseminate the bacteria and cause the illness is required. Rapid analytical techniques like immunomagnetic separation (IMS) method based on the whole bacterial cell detection are shown as excellent tools to investigate all the potential sources of risk.
机译:2015年12月11日在Manzanares,Ciudad Real,西班牙宣布的爆炸性爆发,并于2016年2月3日宣布。宣布案件的数量为593,有277例确诊案件,以便可以考虑它作为攻击率最高的爆发之一。除了各种风险因素和习惯之外,此速度可能归因于人口的老龄化,以及当时在本市维护的气象条件(热反转)之外。公共卫生服务成功地破坏了细菌传输。通过微生物分析早期鉴定了几种设施,包括冷却塔和装饰喷泉,作为可能的感染源。快速分析技术用于快速军团检测和阳性设施的关机和预防性闭包已被认为是控制此爆发的关键要素。快速的微生物分析有助于在军队警告疾病爆发中早期识别潜在风险来源,减少根据公共卫生干预的实际需求并缩短人口曝光的决策过程。在爆发中的综合和直接干预是减少对公共卫生影响的重要问题。为此,需要识别和控制能够传导细菌的可疑来源并导致疾病。基于全细菌细胞检测的免疫磁分离(IMS)方法等快速分析技术被示出为调查所有潜在风险来源的优异工具。

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