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神经嵴细胞迁移:对外源纤连蛋白和高细胞密度的需求

Neural crest cell migration: requirements for exogenous fibronectin and high cell density.

作者信息

Rovasio R A, Delouvee A, Yamada K M, Timpl R, Thiery J P

出版信息

J Cell Biol. 1983 Feb;96(2):462-73. doi: 10.1083/jcb.96.2.462.

Abstract

Cells of the neural crest participate in a major class of cell migratory events during embryonic development. From indirect evidence, it has been suggested that fibronectin (FN) might be involved in these events. We have directly tested the role of FN in neural crest cell adhesion and migration using several in vitro model systems. Avian trunk neural crest cells adhered readily to purified plasma FN substrates and to extracellular matrices containing cellular FN. Their adhesion was inhibited by antibodies to a cell-binding fragment of FN. In contrast, these cells did not adhere to glass, type I collagen, or to bovine serum albumin in the absence of FN. Neural crest cell adhesion to laminin (LN) was significantly less than to FN; however, culturing of crest cells under conditions producing an epithelioid phenotype resulted in cells that could bind equally as well to LN as to FN. The migration of neural crest cells appeared to depend on both the substrate and the extent of cell interactions. Cells migrated substantially more rapidly on FN than on LN or type I collagen substrates; if provided a choice between stripes of FN and glass or LN, cells migrated preferentially on the FN. Migration was inhibited by antibodies against the cell-binding region of FN, and the inhibition could be reversed by a subsequent addition of exogenous FN. However, the migration on FN was random and displayed little persistence of direction unless cells were at high densities that permitted frequent contacts. The in vitro rate of migration of cells on FN-containing matrices was 50 microns/h, similar to their migration rates along the narrow regions of FN-containing extracellular matrix in migratory pathways in vivo. These results indicate that FN is important for neural crest cell adhesion and migration and that the high cell densities of neural crest cells in the transient, narrow migratory pathways found in the embryo are necessary for effective directional migration.

摘要

神经嵴细胞在胚胎发育过程中参与了一类主要的细胞迁移事件。从间接证据来看,有人提出纤连蛋白(FN)可能参与了这些事件。我们使用了几种体外模型系统直接测试了FN在神经嵴细胞黏附和迁移中的作用。鸡胚躯干神经嵴细胞很容易黏附于纯化的血浆FN底物以及含有细胞FN的细胞外基质。它们的黏附被针对FN细胞结合片段的抗体所抑制。相比之下,在没有FN的情况下,这些细胞不黏附于玻璃、I型胶原或牛血清白蛋白。神经嵴细胞对层粘连蛋白(LN)的黏附明显少于对FN的黏附;然而,在产生上皮样表型的条件下培养嵴细胞,会使细胞对LN和FN的结合能力相当。神经嵴细胞的迁移似乎既取决于底物,也取决于细胞相互作用的程度。细胞在FN上的迁移速度明显快于在LN或I型胶原底物上的迁移速度;如果在FN条带与玻璃或LN条带之间进行选择,细胞会优先在FN上迁移。迁移被针对FN细胞结合区域的抗体所抑制,并且随后添加外源性FN可以逆转这种抑制。然而,在FN上的迁移是随机的,并且几乎没有方向持续性,除非细胞处于允许频繁接触的高密度状态。细胞在含FN基质上的体外迁移速度为50微米/小时,类似于它们在体内迁移途径中沿着含FN细胞外基质的狭窄区域的迁移速度。这些结果表明,FN对神经嵴细胞的黏附和迁移很重要,并且胚胎中短暂、狭窄的迁移途径中神经嵴细胞的高细胞密度对于有效的定向迁移是必要的。

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