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透明质酸相关的黏附线索控制海马体中的纤维分离。

Hyaluronan-associated adhesive cues control fiber segregation in the hippocampus.

作者信息

Förster E, Zhao S, Frotscher M

机构信息

Institute of Anatomy, University of Freiburg, PO Box 111, D-79001, Freiburg, Germany.

出版信息

Development. 2001 Aug;128(15):3029-39. doi: 10.1242/dev.128.15.3029.

Abstract

In various brain regions, particularly in the hippocampus, afferent fiber projections terminate in specific layers. Little is known about the molecular cues governing this laminar specificity. To this end we have recently shown that the innervation pattern of entorhinal fibers to the hippocampus is mimicked by the lamina-specific adhesion of entorhinal cells on living hippocampal slices, suggesting a role of adhesion molecules in the positioning of entorhinal fibers. Here, we have analyzed the role of extracellular matrix components in mediating this lamina-specific adhesion. We show that hyaluronidase treatment of hippocampal slices abolishes lamina-specific adhesion as well as layer-specific growth of entorhinal fibers to the dentate outer molecular layer in organotypic slice cultures. We conclude that hyaluronan-associated molecules play a crucial role in the formation of the lamina-specific entorhinal projection to the hippocampus.

摘要

在各个脑区,尤其是海马体中,传入纤维投射终止于特定的层。关于支配这种层特异性的分子线索,我们知之甚少。为此,我们最近发现,内嗅细胞在活的海马体切片上的层特异性黏附模拟了内嗅纤维至海马体的神经支配模式,这表明黏附分子在内嗅纤维定位中发挥作用。在此,我们分析了细胞外基质成分在介导这种层特异性黏附中的作用。我们发现,用透明质酸酶处理海马体切片可消除层特异性黏附以及在器官型切片培养物中内嗅纤维向齿状外分子层的层特异性生长。我们得出结论,与透明质酸相关的分子在形成内嗅至海马体的层特异性投射中起关键作用。

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