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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Towards a paradigm shift in innate immunity-seminal work by Hans G. Boman and co-workers
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Towards a paradigm shift in innate immunity-seminal work by Hans G. Boman and co-workers

机译:汉斯·G·博曼(Hans G.

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摘要

Four decades ago, immunological research was dominated by the field of lymphoid biology. It was commonly accepted that multicellular eukaryotes defend themselves through phagocytosis. The lack of lymphoid cells in insects and other simpler animals, however, led to the common notion that they might simply lack the capacity defend themselves with humoral factors. This view was challenged by microbiologist Hans G. Boman and co-workers in a series of publications that led to the advent of antimicrobial peptides as a universal arm of the immune system. Besides ingenious research, Boman ignited his work by posing the right questions. He started off by asking himself a simple question: 'Antibodies take weeks to produce while many microbes divide hourly; so how come we stay healthy?'. This led to two key findings in the field: the discovery of an inducible and highly potent antimicrobial immune response in Drosophila in 1972, followed by the characterization of cecropin in 1981. Despite broadly being considered an insect-specific response at first, the work of Boman and co-workers eventually created a bandwagon effect that unravelled various aspects of innate immunity.
机译:四十年前,淋巴生物学领域主导了免疫学研究。人们普遍认为,多细胞真核生物通过吞噬作用来捍卫自己。但是,昆虫和其他较简单的动物缺乏淋巴样细胞,导致人们普遍认为它们可能根本没有能力通过体液因素来防御自身。微生物学家Hans G. Boman及其同事在一系列出版物中提出了这一观点,这些出版物导致了抗菌肽作为免疫系统的通用臂的出现。除了精巧的研究,Boman还提出了正确的问题来点燃自己的作品。他首先问自己一个简单的问题:“抗体需要数周的时间才能产生,而许多微生物每小时都在分裂。那么我们如何保持健康?'。这导致了该领域的两个重要发现:1972年在果蝇中发现了一种可诱导且高效的抗微生物免疫反应,其次是在1981年对头孢克辛进行了表征。尽管最初被广泛认为是昆虫特异性反应, Boman和他的同事最终创造了一种潮流效应,揭示了先天免疫的各个方面。

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