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Galleria mellonella as a Model System To Study Acinetobacter baumannii Pathogenesis and Therapeutics

机译:梅隆回廊作为研究鲍曼不动杆菌发病机理和治疗方法的模型系统

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摘要

Nonmammalian model systems of infection such as Galleria mellonella (caterpillars of the greater wax moth) have significant logistical and ethical advantages over mammalian models. In this study, we utilize G. mellonella caterpillars to study host-pathogen interactions with the gram-negative organism Acinetobacter baumannii and determine the utility of this infection model to study antibacterial efficacy. After infecting G. mellonella caterpillars with a reference A. baumannii strain, we observed that the rate of G. mellonella killing was dependent on the infection inoculum and the incubation temperature postinfection, with greater killing at 37°C than at 30°C (P = 0.01). A. baumannii strains caused greater killing than the less-pathogenic species Acinetobacter baylyi and Acinetobacter lwoffii (P < 0.001). Community-acquired A. baumannii caused greater killing than a reference hospital-acquired strain (P < 0.01). Reduced levels of production of the quorum-sensing molecule 3-hydroxy-C12-homoserine lactone caused no change in A. baumannii virulence against G. mellonella. Treatment of a lethal A. baumannii infection with antibiotics that had in vitro activity against the infecting A. baumannii strain significantly prolonged the survival of G. mellonella caterpillars compared with treatment with antibiotics to which the bacteria were resistant. G. mellonella is a relatively simple, nonmammalian model system that can be used to facilitate the in vivo study of host-pathogen interactions in A. baumannii and the efficacy of antibacterial agents.
机译:与非哺乳动物模型感染系统相比,例如梅勒拱廊(大蜡蛾的幼虫)具有很大的后勤和伦理优势。在这项研究中,我们利用毛毛虫(G. mellonella caterpillars)研究与革兰氏阴性生物鲍曼不动杆菌的宿主-病原体相互作用,并确定该感染模型的实用性以研究抗菌功效。用参考鲍曼不动杆菌感染毛虫G. mellonella毛毛虫后,我们观察到,毛虫G. mellonella的杀灭率取决于感染接种物和感染后的孵育温度,在37°C时比30°C时更大的杀伤力(P = 0.01)。鲍曼不动杆菌菌株比致病性较低的拜氏不动杆菌和卢氏不动杆菌引起更大的杀伤力(P <0.001)。社区获得的鲍曼不动杆菌比参考医院获得的菌株引起更大的杀伤力(P <0.01)。群体感应分子3-羟基-C12-高丝氨酸内酯的生产水平降低,导致鲍曼不动杆菌对梅毒杆菌的毒力没有变化。用对感染的 A具有体外活性的抗生素治疗致命的鲍曼不动杆菌。鲍曼氏菌菌株显着延长了 G的存活。毛虫与使用细菌对其具有抗药性的抗生素进行比较。 G。 mellonella 是一个相对简单的非哺乳动物模型系统,可用于促进 A中宿主-病原体相互作用的体内研究。鲍曼氏菌和抗菌剂的功效。

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