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细胞迁移与鸡胚肢体发育:FGF-4和顶外胚层嵴的趋化作用

Cell migration and chick limb development: chemotactic action of FGF-4 and the AER.

作者信息

Li S, Muneoka K

机构信息

Department of Cell and Molecular Biology, Tulane University, New Orleans, Louisiana, 70118, USA.

出版信息

Dev Biol. 1999 Jul 15;211(2):335-47. doi: 10.1006/dbio.1999.9317.

Abstract

Experiments have been carried out to investigate the role of the apical ectodermal ridge (AER) and FGF-4 on the control of cell migration during limb bud morphogenesis. By coupling DiI cell labeling with ectopic implantation of FGF-4 microcarrier beads we have found that FGF-4 acts as a potent and specific chemoattractive agent for mesenchymal cells of the limb bud. The response to FGF-4 is dose dependent in both the number of cells stimulated to migrate and the distance migrated. The cell migration response to FGF-4 appears to be independent of the known inductive activity of FGF-4 on Shh gene expression. We investigated the role of the AER in controlling cell migration by characterizing the migration pattern of DiI-labeled subapical cells during normal limb outgrowth and following partial AER removal. Subapical cells within 75 micrometer of the AER migrate to make contact with the AER and are found intermingled with nonlabeled cells. Thus, the progress zone is dynamic with cells constantly altering their neighbor relationships during limb outgrowth. AER removal studies show that cell migration is AER dependent and that subapical cells redirect their path of migration toward a functional AER. These studies indicate that the AER has a chemoattractive function and regulates patterns of cell migration during limb outgrowth. Our results suggest that the chemoattractive activity of the AER is mediated in part by the production of FGF-4.

摘要

已开展实验以研究顶端外胚层嵴(AER)和FGF - 4在肢体芽形态发生过程中对细胞迁移控制的作用。通过将DiI细胞标记与FGF - 4微载体珠的异位植入相结合,我们发现FGF - 4对肢体芽间充质细胞起着一种强大且特异的化学吸引剂作用。对FGF - 4的反应在受刺激迁移的细胞数量和迁移距离方面均呈剂量依赖性。细胞对FGF - 4的迁移反应似乎独立于FGF - 4对Shh基因表达的已知诱导活性。我们通过表征正常肢体生长过程中以及部分AER去除后DiI标记的亚顶端细胞的迁移模式,来研究AER在控制细胞迁移中的作用。AER 75微米范围内的亚顶端细胞迁移以与AER接触,并与未标记细胞混合存在。因此,进展区是动态的,在肢体生长过程中细胞不断改变其相邻关系。AER去除研究表明细胞迁移依赖于AER,并且亚顶端细胞将其迁移路径重新导向功能性AER。这些研究表明AER具有化学吸引功能,并在肢体生长过程中调节细胞迁移模式。我们的结果表明AER的化学吸引活性部分是由FGF - 4的产生介导的。

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