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Novel Experimental Mouse Model to Study the Pathogenesis and Therapy of Actinobacillus pleuropneumoniae Infection

机译:研究胸膜肺炎放线杆菌感染发病机制和治疗的新型实验小鼠模型

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摘要

Actinobacillus pleuropneumoniae (APP) is a major cause of lung infections in pigs. An experimental mouse has the edge over pigs pertaining to the ease of experimental operation, disease study and therapy, abundance of genetic resources, and cost. However, it is a challenge to introduce APP into a mouse lung due to the small respiratory tract of mice and bacterial host tropism. In this study, an effective airborne transmission of APP serovar 1 (APP1) was developed in mice for lung infection. Consequently, APP1 infected BALB/c mice and caused 60% death within three days of infection at the indicated condition. APP1 seemed to enter the lung and, in turn, spread to other organs of the mice over the first 5 days after infection. Accordingly, APP1 damaged the lung as evidenced by its morphological and histological examinations. Furthermore, ampicillin fully protected mice against APP1 as shown by their survival, clinical symptoms, body weight loss, APP1 count, and lung damages. Finally, the virulence of two extra APP strains, APP2 and APP5, in the model was compared based on the survival rate of mice. Collectively, this study successfully established a fast and reliable mouse model of APP which can benefit APP research and therapy. Such a model is a potentially useful model for airway bacterial infections.
机译:胸膜肺炎放线杆菌 (APP) 是猪肺部感染的主要原因。实验小鼠在实验操作、疾病研究和治疗、遗传资源丰富和成本方面比猪更具优势。然而,由于小鼠的呼吸道小且细菌宿主嗜性强,将 APP 引入小鼠肺是一项挑战。在这项研究中,在小鼠中开发了 APP 血清型 1 (APP1) 的有效空气传播,用于肺部感染。因此,APP1 感染了 BALB/c 小鼠,并在指定条件下感染后 3 天内导致 60% 的死亡。APP1 似乎进入肺部,进而在感染后的前 5 天内扩散到小鼠的其他器官。因此,APP1 损伤了肺,其形态学和组织学检查证明了这一点。此外,氨苄青霉素完全保护小鼠免受 APP1 的侵害,如它们的存活率、临床症状、体重减轻、APP1 计数和肺损伤所示。最后,根据小鼠的存活率比较模型中两种额外 APP 菌株 APP2 和 APP5 的毒力。总的来说,这项研究成功地建立了一种快速可靠的 APP 小鼠模型,可以有利于 APP 研究和治疗。这种模型对于气道细菌感染来说可能是一个有用的模型。

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