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A Detailed Protocol to Enable Safe-Handling Preemptive Detection and Systematic Surveillance of Rat-Vectored Pathogens in the Urban Environment

机译:在城市环境中启用对大鼠媒介病原体的安全处理抢先检测和系统监视的详细协议

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摘要

We detail a five-stage protocol to address physical barriers and experimental limitations that have hindered routine pathogen monitoring of wild rats in urban settings. New York City potentially harbors from 2 to 32 million rats among its 8-million people. However, at a time, when people are most vulnerable to disease from over-crowdedness brought on by increased urbanization of society, the difficulty of studying wild rats has led to a paucity of ecological and epidemiological research. Challenges of safely handling animals and the difficulties of identifying individual animals and the emergence of their respective pathogen loads (timing of infection) have impeded progress. We previously reported a method using radio frequency identification paired with load cell and camera traps to enable the identification of individual animals and subsequent monitoring of the animals’ weights (an indicator of health). However, efficient pathogen surveillance requires repeated captures of the same individual in order to isolate and document the emergence of new pathogens, or variations in pathogen load, over time. Most of these barriers are now addressed in our protocol, which is aided by the use of a mobile, outdoor laboratory, followed by incorporation of pheromone-based lures to attract individuals back to active sensors, within a camera trap. This approach allows for the assessment of individual animal health, behaviors under camera, and changing pathogen loads and weights in most urban environments (e.g., financial district, docks, sewers, and residential). Five phases are described and presented: (1) site selection and urban trapping, (2) anesthetization, (3) serological and ectoparasite collection, (4) microchip implantation, and (5) retrapping and luring animals back to active remote sensors. In order to fulfill the unmet call for preemptive pathogen surveillance, public health officials and researchers may wish to adapt, or modify, similar protocols to ensure early detection and monitoring of rat-borne zoonoses, before they become problematic.
机译:我们详细介绍了一个五阶段协议,以解决阻碍城市环境中野鼠常规病原体监测的物理障碍和实验限制。纽约市在其800万人中可能藏有2到3200万只老鼠。但是,在某个时候,当人们最容易受到社会日趋城市化带来的过度拥挤所致疾病的侵袭时,研究野鼠的困难导致了生态学和流行病学研究的匮乏。安全处理动物的挑战以及识别单个动物的困难以及它们各自病原体负荷的出现(感染时机)阻碍了进步。我们之前曾报道过一种使用射频识别,称重传感器和摄像头捕捉器进行配对的方法,从而可以识别单个动物并随后监视动物的体重(健康指标)。但是,有效的病原体监视需要重复捕获同一个人,以便隔离和记录新病原体的出现或病原体负荷随时间的变化。现在,在我们的协议中解决了大多数这些障碍,这可以通过使用移动的室外实验室来解决,然后结合基于信息素的诱饵来将个人吸引回相机陷阱内的主动传感器。这种方法可以评估个体动物的健康状况,在相机下的行为以及在大多数城市环境(例如金融区,码头,下水道和住宅)中病原体的负荷和重量的变化。描述并介绍了五个阶段:(1)选址和城市诱捕,(2)麻醉,(3)血清学和体外寄生虫收集,(4)微芯片植入以及(5)将动物诱捕并引诱回有源遥感器。为了满足对先发性病原体监测的未满足要求,公共卫生官员和研究人员不妨修改或修改类似的规程,以确保在鼠源性人畜共患病成为问题之前尽早发现和监测。

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