Arenzana Francisco Javier, Clemente Diego, Sánchez-González Rosario, Porteros Angel, Aijón José, Arévalo Rosario
Departamento de Biología Celular y Patología, Universidad de Salamanca, Facultad de Medicina, Campus Miguel de Unamuno, Spain.
Brain Res Bull. 2005 Sep 15;66(4-6):421-5. doi: 10.1016/j.brainresbull.2005.03.006. Epub 2005 Apr 7.
We have analyzed the distribution pattern of choline acetyltransferase (ChAT) in the zebrafish brain and retina during ontogeny. ChAT-immunoreactive (ChAT-ir) neurons are observed in the prosencephalon from 60 h postfertilization (hpf) onwards, exclusively in the preoptic area (basal plate of p6) derived from the secondary prosencephalon. In the mesencephalon, ChAT-ir cells are observed in both the optic tectum and the tegmentum. Stained cells in the tegmentum are observed from 60 hpf onwards, while in the optic tectum they appear after hatching. In the rhombencephalon, ChAT-ir cells are first observed in the isthmic region (rh1) and in the medulla oblongata (rh5-rh7) at the end of embryonic life. The rhombencephalic cholinergic cell groups develop in a gradual caudorostral sequence. Motoneurons of the spinal cord are ChAT-ir from 48 hpf onwards. The retina displays ChAT-ir neuropil in both the inner and outer plexiform layers from embryonic life, whereas stained amacrine cells are only observed after hatching. The staining in the outer plexiform layer gradually decreases during juvenile development. The optic nerve axons show a transient expression of ChAT at the end of embryonic development. The early presence of ChAT immunolabeling suggests an important neuromodulator role for acetylcholine in the first developmental stages.
我们分析了斑马鱼脑和视网膜在个体发育过程中胆碱乙酰转移酶(ChAT)的分布模式。受精后60小时(hpf)起,在前脑可见ChAT免疫反应性(ChAT-ir)神经元,仅见于源自中脑的视前区(p6的基板)。在中脑,在视顶盖和被盖中均观察到ChAT-ir细胞。被盖中的染色细胞从60 hpf起可见,而视顶盖中的细胞在孵化后出现。在菱脑,ChAT-ir细胞在胚胎末期首先在峡部区域(rh1)和延髓(rh5-rh7)中观察到。菱脑胆碱能细胞群以逐渐向尾-向头的顺序发育。脊髓运动神经元从48 hpf起为ChAT-ir。视网膜从胚胎期开始在内、外丛状层均显示ChAT-ir神经毡,而染色的无长突细胞仅在孵化后观察到。外丛状层的染色在幼体发育过程中逐渐减少。视神经轴突在胚胎发育末期显示ChAT的短暂表达。ChAT免疫标记的早期出现表明乙酰胆碱在早期发育阶段具有重要的神经调节作用。