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鳞翅目模式宿主家蚕的抗感染治疗方法。

Anti-infective therapeutics from the Lepidopteran model host Galleria mellonella.

机构信息

Fraunhofer Institute of Molecular Biology and Applied Ecology, Department of Bio-Resources, Giessen, Germany.

出版信息

Curr Pharm Des. 2011;17(13):1240-5. doi: 10.2174/138161211795703799.

Abstract

The larvae of the greater wax moth Galleria mellonella prosper in use both as surrogate alternative model hosts for human pathogens and as a whole-animal-high-throughput-system for in vivo testing of antibiotics or mutant-libraries of pathogens. In addition, a broad spectrum of antimicrobial peptides and proteins has been identified in this insect during past decade among which some appear to be specific for Lepidoptera. Its arsenal of immunity-related effector molecules encompasses peptides and proteins exhibiting potent activity against bacteria, fungi or both, whose potential as new anti-infective therapeutics are presently being explored. Of particular interest is the insect metalloproteinase inhibitor (IMPI) which has been discovered in G. mellonella. The IMPI exhibits a specific and potent activity against thermolysin-like microbial metalloproteinases including a number of prominent virulence and/or pathogenic factors of human pathogens which are responsible for severe symptoms such as septicemia, hemorrhagic tissue bleeding, necrosis and enhancement of vascular permeability. The IMPI and antimicrobial peptides from G. mellonella may provide promising templates for the rational design of new drugs since evidence is available that the combination of antibiotics with inhibitors of pathogen-associated proteolytic enzymes yields synergistic therapeutic effects. The potential and limitations of insect-derived gene-encoded antimicrobial compounds as anti-infective therapeutics are discussed.

摘要

大蜡螟(Galleria mellonella)的幼虫作为人类病原体的替代替代模型宿主,以及用于抗生素或病原体突变文库的体内测试的高通量整体动物系统,得到了广泛应用。此外,在过去十年中,人们在这种昆虫中发现了广泛的抗菌肽和蛋白质,其中一些似乎对鳞翅目昆虫具有特异性。其免疫相关效应分子库包括对细菌、真菌或两者都具有强大活性的肽和蛋白质,其作为新的抗感染治疗方法的潜力目前正在探索中。特别引人注目的是在大蜡螟中发现的昆虫金属蛋白酶抑制剂(IMPI)。IMPI 对热稳定的微生物金属蛋白酶具有特异性和强大的活性,包括许多人类病原体的主要毒力和/或致病因子,这些因子可导致严重症状,如败血症、出血性组织出血、坏死和血管通透性增强。IMPI 和大蜡螟的抗菌肽可为新药物的合理设计提供有前途的模板,因为有证据表明,抗生素与病原体相关蛋白水解酶抑制剂的联合使用可产生协同治疗效果。本文讨论了昆虫衍生的基因编码抗菌化合物作为抗感染治疗药物的潜力和局限性。

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