Hawthorn J, Ang V T, Jenkins J S
Brain Res. 1985 Oct 28;346(1):51-7. doi: 10.1016/0006-8993(85)91093-5.
The content of arginine vasopressin and oxytocin in various extrahypothalamic sites of the rat brain and spinal cord was determined by specific radioimmunoassays after lesions had been made in either the paraventricular (PVN), supraoptic (SON) or suprachiasmatic nuclei (SCN). In some animals all 3 nuclei were destroyed together. The PVN provided a considerable amount of the vasopressin innervation of the solitary tract nucleus, and most of that in the spinal cord. Oxytocin was removed from some areas after lesions of the PVN and, again, most of this peptide was lost from the spinal cord. Lesions of the SCN did not appear to be followed by significant quantitative changes in either hormone in any of the areas studied. Lesions of the SON resulted in loss of oxytocin, particularly in the periventricular grey and some other areas, suggesting that extrahypothalamic projections from this nucleus may be more important than was previously assumed. Lesions of all 3 nuclei which included destruction of accessory hypothalamic nuclei resulted in a much more widespread loss of vasopressin and oxytocin, but there was preservation of both peptides in the dorsal raphe nucleus and much of those present in the locus coeruleus. It is concluded that the contribution of the classical hypothalamic nuclei to the extrahypothalamic content of vasopressin and oxytocin in rat brain is less than was originally believed, and that there are areas of the brain such as the locus coeruleus and dorsal raphe nucleus in which the source of these peptides may be outside the hypothalamus.
在大鼠脑和脊髓的室旁核(PVN)、视上核(SON)或视交叉上核(SCN)进行损伤后,通过特异性放射免疫测定法测定了大鼠脑和脊髓各个下丘脑外部位中精氨酸加压素和催产素的含量。在一些动物中,这三个核一起被破坏。PVN为孤束核提供了相当数量的加压素神经支配,脊髓中的大部分也是如此。PVN损伤后,催产素从一些区域消失,而且该肽大部分从脊髓中丢失。视交叉上核损伤后,在所研究的任何区域中,两种激素似乎都没有出现明显的定量变化。视上核损伤导致催产素丧失,特别是在脑室周围灰质和其他一些区域,这表明该核的下丘脑外投射可能比以前认为的更重要。包括下丘脑附属核破坏在内的所有三个核损伤导致加压素和催产素更广泛的丧失,但在中缝背核中两种肽得以保留,蓝斑核中存在的大部分肽也得以保留。得出的结论是,经典下丘脑核对大鼠脑中下丘脑外加压素和催产素含量的贡献比最初认为的要小,并且在脑的一些区域,如蓝斑核和中缝背核,这些肽的来源可能在下丘脑之外。