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了解体内血细胞迁移——果蝇血细胞引领道路。

Understanding in vivo blood cell migration--Drosophila hemocytes lead the way.

作者信息

Evans Iwan Robert, Wood Will

机构信息

Department of Biology and Biochemistry, University of Bath, Bath, Somerset, UK.

出版信息

Fly (Austin). 2011 Apr-Jun;5(2):110-4. doi: 10.4161/fly.5.2.14055. Epub 2011 Apr 1.

Abstract

Drosophila embryonic hemocytes have emerged as a potent system to analyze the roles of key regulators of the actin and microtubule cytoskeletons live and in an in vivo context (see Table I and references therein). The relative ease with which live imaging can be used to visualize the invasive migrations of these highly motile macrophages and their responses to wound and chemoattractant signals make them a particularly appropriate and genetically tractable cell type to study in relation to pathological conditions such as cancer metastasis and inflammation. ( 1-3) In order to understand how signaling pathways are integrated for a coordinated response, a question with direct relevance to autoimmune dysfunction, we have sought to more fully characterize the inputs these cells receive in vivo over the course of their developmental dispersal. These studies have recently revealed that hemocyte migration is intimately associated with the development of the ventral nerve cord (VNC), a structure used by hemocytes to disperse over the embryo that itself requires this association for its correct morphogenesis. Crucially the VNC must separate from the epidermis to create a channel for hemocyte migration, revealing how constriction of extracellular space can be used to control cell migration in vivo. ( 4).

摘要

果蝇胚胎血细胞已成为一个强大的系统,可在体内实时分析肌动蛋白和微管细胞骨架关键调节因子的作用(见表I及其参考文献)。活体成像可相对轻松地用于观察这些高度运动性巨噬细胞的侵袭性迁移及其对伤口和趋化信号的反应,这使得它们成为研究与癌症转移和炎症等病理状况相关的一种特别合适且易于进行基因操作的细胞类型。(1 - 3)为了理解信号通路如何整合以产生协调反应,这一问题与自身免疫功能障碍直接相关,我们试图更全面地描述这些细胞在发育扩散过程中在体内所接收的输入信号。这些研究最近揭示,血细胞迁移与腹侧神经索(VNC)的发育密切相关,腹侧神经索是血细胞在胚胎上扩散所利用的结构,其自身的正确形态发生也需要这种关联。至关重要的是,腹侧神经索必须与表皮分离以形成血细胞迁移的通道,这揭示了细胞外空间的收缩如何用于在体内控制细胞迁移。(4)

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