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在发育中的免疫系统背景下对传染病进行建模。

Modeling Infectious Diseases in the Context of a Developing Immune System.

作者信息

Masud Samrah, Torraca Vincenzo, Meijer Annemarie H

机构信息

Institute of Biology, Leiden University, Leiden, The Netherlands.

Institute of Biology, Leiden University, Leiden, The Netherlands.

出版信息

Curr Top Dev Biol. 2017;124:277-329. doi: 10.1016/bs.ctdb.2016.10.006. Epub 2016 Dec 19.

Abstract

Zebrafish has been used for over a decade to study the mechanisms of a wide variety of inflammatory disorders and infections, with models ranging from bacterial, viral, to fungal pathogens. Zebrafish has been especially relevant to study the differentiation, specialization, and polarization of the two main innate immune cell types, the macrophages and the neutrophils. The optical accessibility and the early appearance of myeloid cells that can be tracked with fluorescent labels in zebrafish embryos and the ability to use genetics to selectively ablate or expand immune cell populations have permitted studying the interaction between infection, development, and metabolism. Additionally, zebrafish embryos are readily colonized by a commensal flora, which facilitated studies that emphasize the requirement for immune training by the natural microbiota to properly respond to pathogens. The remarkable conservation of core mechanisms required for the recognition of microbial and danger signals and for the activation of the immune defenses illustrates the high potential of the zebrafish model for biomedical research. This review will highlight recent insight that the developing zebrafish has contributed to our understanding of host responses to invading microbes and the involvement of the microbiome in several physiological processes. These studies are providing a mechanistic basis for developing novel therapeutic approaches to control infectious diseases.

摘要

十多年来,斑马鱼一直被用于研究各种炎症性疾病和感染的机制,其模型涵盖了细菌、病毒和真菌病原体。斑马鱼对于研究两种主要先天免疫细胞类型,即巨噬细胞和中性粒细胞的分化、特化和极化尤其重要。斑马鱼胚胎中髓系细胞具有光学可及性,并且可以用荧光标记追踪其早期出现,此外还具备利用遗传学方法选择性消融或扩增免疫细胞群体的能力,这些都使得研究感染、发育和代谢之间的相互作用成为可能。此外,斑马鱼胚胎很容易被共生菌群定殖,这有助于开展强调天然微生物群进行免疫训练以正确应对病原体的必要性的研究。识别微生物和危险信号以及激活免疫防御所需的核心机制具有显著的保守性,这表明斑马鱼模型在生物医学研究中具有很高的潜力。本综述将重点介绍发育中的斑马鱼在我们理解宿主对入侵微生物的反应以及微生物群在若干生理过程中的作用方面所提供的最新见解。这些研究正在为开发控制传染病的新型治疗方法提供机制基础。

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