Halfter W
Department of Neurobiology, University of Pittsburgh, Pennsylvania 15261, USA.
J Neurosci. 1996 Jul 15;16(14):4389-401. doi: 10.1523/JNEUROSCI.16-14-04389.1996.
To study the behavior of optic axons to continuously changing concentrations of their substrate, explants from embryonic retina were placed across gradients of retinal basal lamina proteins and merosin. The following growth patterns of axons in response to the substrate gradients were found: (1) Axons that grew up gradients, i.e., from low to high substrate concentrations, became longer and less fasciculated with increasing concentration of the substrate. On shallow basal lamina gradients, the axons also showed a directional response that resulted in guidance to higher substrate concentrations. (2) Axons that grew down gradients, i.e., from high to low substrate concentrations, became shorter and more fasciculated with decreasing concentrations of the substrate. On gradients of merosin, a significant alteration in the axonal growth direction toward higher substrate concentrations was detected. Axons heading down gradients never U turned to higher substrate concentrations. (3) Axons confronted with discontinuous substrates were confined to the borders of the substrate exclusively, whereas axons confronted with substrate gradients were able to cross into the territory beyond the substrate. (4) The growth patterns of axons on substrate gradients of basal lamina proteins and merosin were similar but not identical, indicating that axons may respond to substrate gradients dependent on its chemical composition. The present results show that substrate gradients can regulate length and fasciculation of neurites and have a limited capability to direct axons to higher substrate concentrations.
为了研究视神经轴突对其底物浓度持续变化的反应,将胚胎视网膜的外植体置于视网膜基膜蛋白和层黏连蛋白梯度上。发现轴突对底物梯度的生长模式如下:(1) 沿梯度向上生长的轴突,即从低底物浓度向高底物浓度生长,随着底物浓度的增加,轴突变得更长且束状化程度更低。在浅的基膜梯度上,轴突也表现出定向反应,从而导向更高的底物浓度。(2) 沿梯度向下生长的轴突,即从高底物浓度向低底物浓度生长,随着底物浓度的降低,轴突变得更短且束状化程度更高。在层黏连蛋白梯度上,检测到轴突生长方向朝向更高底物浓度有显著改变。沿梯度向下生长的轴突从不转向更高的底物浓度。(3) 面对不连续底物的轴突仅局限于底物的边界,而面对底物梯度的轴突能够穿越到底物之外的区域。(4) 轴突在基膜蛋白和层黏连蛋白底物梯度上的生长模式相似但不完全相同,表明轴突可能根据其化学成分对底物梯度做出反应。目前的结果表明,底物梯度可以调节神经突的长度和束状化程度,并且在将轴突导向更高底物浓度方面能力有限。