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IMMUNE CELL IDENTITY perspective from a palimpsest

机译:从最悲观的角度了解免疫细胞身份

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The immune system in mammals is composed of multiple different immune cell types that migrate through the body and are made continuously throughout life. Lymphocytes and myeloid cells interact with each other and depend upon each other, but each are highly diverse and specialized for different roles. Lymphocytes uniquely require developmentally programmed mutational changes in the genome itself for their maturation. Despite profound differences between their mechanisms of threat recognition and threat response, however, the developmental origins of lymphocytes and myeloid cells are interlinked, and important aspects of their response mechanisms remain shared. It is notable that the chain of logic toward our current understanding of the immune defense system over the past 50 years has been driven by strongly posited models that have led to crucial discoveries, even though these models ended up being partly wrong. The predictive strength of these models and their success as guides to incisive experimental research have illuminated the limits of each model's explanatory scope, beyond which another model needed to assume the lead. This brief review describes how a succession of distinct paradigms has helped to clarify a sophisticated picture of immune cell generation and control.
机译:哺乳动物的免疫系统由多种不同的免疫细胞组成,这些免疫细胞通过人体迁移并在整个生命过程中不断产生。淋巴细胞和髓样细胞相互影响并相互依赖,但是它们高度不同并且专门作用于不同的角色。淋巴细胞独特地需要基因组本身发育发育的突变改变才能成熟。尽管它们的威胁识别和威胁响应机制之间存在巨大差异,但是,淋巴细胞和髓样细胞的发育起源是相互联系的,并且它们的响应机制的重要方面仍然共享。值得注意的是,在过去的50年中,我们对免疫防御系统当前了解的逻辑链是由强大的模型驱动的,这些模型导致了关键的发现,尽管这些模型最终部分是错误的。这些模型的预测强度及其成功作为进行深入实验研究的指南,阐明了每个模型的解释范围的局限性,在此范围之外,另一个模型需要承担主导作用。本文简要介绍了一系列不同的范例如何帮助阐明免疫细胞生成和控制的复杂情况。

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