Cork R J, Calhoun T, Perrone M, Mize R R
Department of Cell Biology and Anatomy, Louisiana State University Health Sciences Center, New Orleans, Louisiana 70112, USA.
J Comp Neurol. 2000 Nov 27;427(4):581-92.
Since nitric oxide has a role in the refinement of the retinal projection to the superior colliculus (SC), we studied the onset of neuronal nitric oxide synthase (nNOS) expression in the mouse SC in order to compare its development with that of the refinement process. Sections from animals at ages P1, P5, P8, P11, P15, and P21 and adults were examined with nicotinamide adenine dinucleotide phosphate diaphorase (NADPHd) histochemistry or immunocytochemistry using an antibody directed against nNOS. At all ages there was a wedge of labeled neurons in the dorsolateral periaqueductal gray extending into the deep layers of the SC. At P1 there was also a single superficial band of labeled neurons within the region that will become the intermediate gray layer (IGL). By P5, labeled neurons were also seen in what will become the superficial gray layer. There was a ventral to dorsal progression in nNOS expression with substantial changes in the numbers of labeled neurons in the different laminae between P5 and adulthood. The number of labeled neurons in the IGL peaked at P15, whereas in the superficial layers the numbers continued to increase through P21 and then declined in adults. At all ages these neurons represented a variety of morphological cell types. The onset of nNOS expression in the different laminae is earlier than has been reported in studies using NADPHd as a marker for nNOS. The temporal and spatial patterns of nNOS expression reported here match more closely the time course of pathway refinement in the SC, providing additional evidence for the involvement of nitric oxide in this process.
由于一氧化氮在视网膜向中脑上丘(SC)投射的精细化过程中发挥作用,我们研究了小鼠中脑上丘中神经元型一氧化氮合酶(nNOS)表达的起始情况,以便将其发育过程与精细化过程进行比较。使用针对nNOS的抗体,通过烟酰胺腺嘌呤二核苷酸磷酸黄递酶(NADPHd)组织化学或免疫细胞化学方法,对出生后第1天(P1)、第5天(P5)、第8天(P8)、第11天(P11)、第15天(P15)、第21天(P21)的动物以及成年动物的切片进行检查。在所有年龄段,背外侧导水管周围灰质中有一片标记神经元楔,延伸至中脑上丘的深层。在P1时,在将成为中间灰质层(IGL)的区域内也有一条单一的浅层标记神经元带。到P5时,在将成为浅层灰质层的区域也可见标记神经元。nNOS表达呈现从腹侧到背侧的进展,在P5到成年期之间,不同层中标记神经元的数量有显著变化。IGL中标记神经元的数量在P15时达到峰值,而在浅层,数量在P21之前持续增加,然后在成年期下降。在所有年龄段,这些神经元代表了多种形态的细胞类型。不同层中nNOS表达的起始时间比使用NADPHd作为nNOS标记的研究报告的时间更早。这里报道的nNOS表达的时间和空间模式与中脑上丘通路精细化的时间进程更紧密匹配,为一氧化氮参与这一过程提供了额外证据。