Herman J P, Marciano F F, Gash D M
Neurosci Lett. 1986 Dec 23;72(3):239-46. doi: 10.1016/0304-3940(86)90520-3.
The rodent hypothalamic neurosecretory system normally exhibits remarkable functional and structural plasticity following injury. However, the present study describes a newly observed phenomenon in which neurohypophysectomized animals receiving chronically administered exogenous vasopressin during the post-lesion period (a treatment which insures maximal renal antidiuresis over this time frame) lose all capacity for recovery of antidiuretic function. Functional deficits are accompanied by a severe reduction in the number of neurons exhibiting immunohistochemical staining for arginine vasopressin. These data indicate that the presence of neurological stimulation signaling vasopressin release may play an important role in promoting neural regeneration of the vasopressinergic component of the neurosecretory system.
啮齿动物下丘脑神经分泌系统在受伤后通常表现出显著的功能和结构可塑性。然而,本研究描述了一种新观察到的现象,即在损伤后时期接受长期外源性加压素给药的去神经垂体动物(这种治疗可确保在此时间范围内实现最大程度的肾脏抗利尿作用)失去了所有抗利尿功能恢复的能力。功能缺陷伴随着对精氨酸加压素进行免疫组织化学染色的神经元数量严重减少。这些数据表明,神经刺激信号促进加压素释放的存在可能在促进神经分泌系统加压素能成分的神经再生中发挥重要作用。