Rogers M C, Silverman A J, Gibson M J
Fishberg Center for Neurobiology and Division of Endocrinology, Mount Sinai School of Medicine, New York, New York 10029, USA.
Endocrinology. 1997 Sep;138(9):3956-66. doi: 10.1210/endo.138.9.5416.
The projection of GnRH neurons to the median eminence of the medial basal hypothalamus (MBH) is established early in development and is also seen when preoptic area-derived GnRH cell-containing grafts are placed in the third ventricle of hypogonadal mice. To further study the factors directing GnRH axonal targeting, we cultivated embryonic or postnatal day 1 preoptic area with a coexplant on collagen- and laminin-coated membranes in insert chambers. After 7 days of culture, GnRH-immunoreactive fibers extended significantly farther and in greater number onto the sector of membrane facing a MBH coexplant than in the opposite sector, but not toward coexplants of control tissue. Moreover, such effects were specific, as outgrowth of a general axonal population, immunoreactive for growth-associated protein 43 was not influenced by the presence of the MBH. Preferential GnRH outgrowth toward the MBH was established early and was maintained during 10 days of culture. The importance of substrate-derived guidance was also assessed with confocal microscopy. GnRH axons consistently traveled in the company of growth-associated protein 43-labeled axons, but only erratic associations were seen between GnRH and glial processes extending on the membrane. We suggest that although employing an axonal substrate, GnRH axons follow a diffusible chemoattractive signal(s) secreted by the MBH.
促性腺激素释放激素(GnRH)神经元向内侧基底下丘脑(MBH)正中隆起的投射在发育早期就已建立,当将源自视前区的含GnRH细胞的移植物置于性腺功能减退小鼠的第三脑室时也能观察到这种投射。为了进一步研究指导GnRH轴突靶向的因素,我们将胚胎期或出生后第1天的视前区与共植入物一起培养在插入式培养室中涂有胶原蛋白和层粘连蛋白的膜上。培养7天后,与对照组织的共植入物相比,GnRH免疫反应性纤维向面对MBH共植入物的膜区域延伸得更远且数量更多,但不会朝着对照组织的共植入物延伸。此外,这种影响是特异性的,因为对生长相关蛋白43呈免疫反应的一般轴突群体的生长不受MBH存在的影响。GnRH向MBH的优先生长在早期就已建立,并在培养的10天内得以维持。还通过共聚焦显微镜评估了底物衍生引导的重要性。GnRH轴突始终与生长相关蛋白43标记的轴突相伴而行,但在GnRH与在膜上延伸的神经胶质突起之间仅观察到不稳定的关联。我们认为,尽管GnRH轴突利用轴突底物,但它们遵循由MBH分泌的可扩散化学吸引信号。