Literature DB >> 2632234

Effect of the notochord on proliferation and differentiation in the neural tube of the chick embryo.

H W van Straaten1, J W Hekking, J P Beursgens, E Terwindt-Rouwenhorst, J Drukker.   

Abstract

After implantation of a notochord fragment lateral to the neural tube in a 2-day chick embryo, at 4 days the ipsilateral neural tube half was increased in size and axons left the neural tube in a broad dorsoventral area (van Straaten et al. 1985). This enlargement appears to coincide with an increased area of AChE-positive basal plate neuroblasts, as determined with scan-cytophotometry. The effect was ipsilateral and local: clear effects were seen only when the implant was localized less than 80 microns from the neural tube and over 120 microns from the ventral notochord. In order to investigate the expected enhancement of proliferation, the mitotic density and the number of cells at the site of the implant at 3 days was determined and the mitotic index calculated. All three parameters showed an increase. It was concluded that the cell cycle was shorter in the implant area relative to the control area, at least during the third day. At 4 days the number of cells was still increased, predominantly in the basal plate. It appeared that the numerical increase was for the larger part due to neuroblasts. The synergism of two notochords thus resulted in enhancement of proliferation and differentiation in the neural tube. It is suggested that the notochord merely regulates and arranges the surrounding sclerenchymal cells, which are the effective cells in the regulation of neural tube development.

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Year:  1989        PMID: 2632234     DOI: 10.1242/dev.107.4.793

Source DB:  PubMed          Journal:  Development        ISSN: 0950-1991            Impact factor:   6.868


  17 in total

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6.  Axial structures control laterality in the distribution pattern of endothelial cells.

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8.  Spinal cord-notochord relationship in normal human embryos and in a human embryo with double spinal cord.

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10.  Lineage specification of neuronal precursors in the mouse spinal cord.

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