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金蝇幼虫-胞内细菌病原体感染模型:来龙去脉。

Galleria mellonella-intracellular bacteria pathogen infection models: the ins and outs.

机构信息

Section of Paediatric Infectious Disease, Department of Infectious Disease, St Mary's campus, Imperial College London, London W2 1PG, United Kingdom.

Centre for Bacterial Resistance Biology, Department of Infectious Disease, South Kensington campus, Imperial College London, London SW7 2AZ, United Kingdom.

出版信息

FEMS Microbiol Rev. 2023 Mar 10;47(2). doi: 10.1093/femsre/fuad011.

Abstract

Galleria mellonella (greater wax moth) larvae are used widely as surrogate infectious disease models, due to ease of use and the presence of an innate immune system functionally similar to that of vertebrates. Here, we review G. mellonella-human intracellular bacteria pathogen infection models from the genera Burkholderia, Coxiella, Francisella, Listeria, and Mycobacterium. For all genera, G. mellonella use has increased understanding of host-bacterial interactive biology, particularly through studies comparing the virulence of closely related species and/or wild-type versus mutant pairs. In many cases, virulence in G. mellonella mirrors that found in mammalian infection models, although it is unclear whether the pathogenic mechanisms are the same. The use of G. mellonella larvae has speeded up in vivo efficacy and toxicity testing of novel antimicrobials to treat infections caused by intracellular bacteria: an area that will expand since the FDA no longer requires animal testing for licensure. Further use of G. mellonella-intracellular bacteria infection models will be driven by advances in G. mellonella genetics, imaging, metabolomics, proteomics, and transcriptomic methodologies, alongside the development and accessibility of reagents to quantify immune markers, all of which will be underpinned by a fully annotated genome.

摘要

家蚕(大蜡螟)幼虫被广泛用作替代传染性疾病模型,因为它们易于使用,并且具有与脊椎动物相似的先天免疫系统。在这里,我们回顾了伯克霍尔德氏菌属、柯克斯氏体属、弗朗西斯氏菌属、李斯特菌属和分枝杆菌属的 G. mellonella 与人细胞内细菌病原体感染模型。对于所有属,G. mellonella 的使用增加了对宿主-细菌相互作用生物学的理解,特别是通过比较密切相关的物种和/或野生型与突变体对的毒力研究。在许多情况下,G. mellonella 中的毒力与在哺乳动物感染模型中发现的毒力相似,尽管尚不清楚致病机制是否相同。G. mellonella 幼虫的使用加速了新型抗菌药物治疗细胞内细菌感染的体内疗效和毒性测试:由于 FDA 不再要求进行动物测试以获得许可,该领域将扩大。随着 G. mellonella 遗传学、成像、代谢组学、蛋白质组学和转录组学方法的进步,以及用于量化免疫标志物的试剂的开发和可及性的提高,以及完全注释基因组的支持,G. mellonella-细胞内细菌感染模型的进一步使用将得到推动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/304d/10045907/4ca12e79aae0/fuad011fig1.jpg

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