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Deposition pattern of aerosolized Legionella using an ex vivo human-porcine respiratory model

机译:使用离体人猪呼吸模型的雾化军团菌的沉积模式

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Legionella are bacteria responsible for severe lung pathologies. However how they enter and are deposited within the respiratory tract remains poorly documented. Data using animal testing led to the establishment of mathematical models allowing the estimation of aerosol dispersion risks. But direct extrapolation to humans is questionable and experimental models more physiologically representative of the inhalation route are welcome. The aim of this study was to develop a model as close as possible to the human anatomy and physiology allowing determining the deposition pattern of aerosolized Legionella while limiting in vivo experiments. To that purpose, we adapted the chimeric respiratory tract model we previously developed. This original model consisted of a replica of the human upper respiratory airways made by additive manufacturing connected to ex vivo porcine lungs ventilated by passive expansion, as for humans in physiological conditions. These experiments didn't imply specific animal sacrifices as pigs were bred for human consumption and lungs were considered as wastes by the slaughterhouse. Fluorescent Legionella were aerosolized and visualized using Cellvizio Lab (probe-based con focal fluorescence microscope). Legionella were found in the whole respiratory tract. Broncho-alveolar lavages were also performed and the amount of Legionella reaching the thoracic region was quantified by culture and qPCR. Legionella were found preferentially in the left upper lobe compared to the right lower lobe. To our knowledge, it is the first time that experiments mimicking so closely human exposure by inhalation are performed while limiting animal experiments and providing a model for further Legionella infectious risk assessment.
机译:军团菌是导致严重肺部疾病的细菌。但是,它们如何进入呼吸道以及如何沉积在呼吸道中的文献仍然很少。使用动物试验获得的数据导致建立了数学模型,从而可以估算气溶胶扩散风险。但是直接外推到人类是有问题的,欢迎在生理上代表吸入途径的实验模型。这项研究的目的是建立一个尽可能接近人体解剖学和生理学的模型,从而确定雾化军团菌的沉积模式,同时限制体内实验。为此,我们采用了先前开发的嵌合呼吸道模型。该原始模型由通过增材制造制成的人类上呼吸道的复制品组成,该制造产品与通过被动扩张进行通气的离体猪肺相连,适用于处于生理条件下的人类。这些实验并不意味着特定的动物牺牲,因为猪是为人类食用而饲养的,而屠宰场认为肺是废物。使用Cellvizio Lab(基于探针的共聚焦荧光显微镜)将荧光军团菌雾化并可视化。军团菌在整个呼吸道中被发现。还进行了支气管肺泡灌洗,并且通过培养和qPCR定量了到达胸腔区域的军团菌的量。与右下叶相比,军团菌优先发现在左上叶。据我们所知,这是首次进行模拟模拟,通过吸入如此紧密地接触人体,同时限制了动物实验,并为进一步的军团菌感染风险评估提供了模型。

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