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大鼠下丘脑-神经垂体系统中血管加压素和催产素的免疫荧光

Immunofluorescence of vasopressin and oxytocin in the rat hypothalamo-neurohypophypopseal system.

作者信息

Swaab D F, Pool C W, Nijveldt F

出版信息

J Neural Transm. 1975;36(3-4):195-215. doi: 10.1007/BF01253126.

Abstract

The present paper deals with the development of an immunofluorescence procedure that allows specific localization of vasopressin and oxytocin in the hypothalamo-neurohypophyseal system(hnx) of the rat. Antibodies against arginine vasopressin (AVP), lysine-vasopressin (LVP) and oxytocin were raised by injecting these hormones that were covalently bound to thyroglobulin into rabbits. The vasopressin-immunized rabbits showed periods of diabetes insipidus, while histoloty of the "hns revealed an intact neurosecretory system with signs of increased endogenous hormone synthesis in the supraoptic nucleus and increased release in the neuro-hypophysis of some rabbits. The daily water intake of the oxytocin-immunized rabbits was similar to that of control rabbits. The development of antibodies against vasopressin as measured in the immunofluorescence procedure showed a course that was quite different from the curve of the titer as determined by radioimmunoassay (RIA). Also the specificity of the antibodies used in the immunofluorescence procedure was found to be quite different from their specificity in a RIA system. Potency and specificity of the antibodies have to be studied therefore within the immunofluorescence procedure itself. Using freshly frozen acetone-postfixed hypotalami or pituitaries, no sharp localization of immunofluorescence could be obtained in the HNS. Therefore prefixation was performed. Both, the type and the duration of prefixation revealed quite different results regarding the immunofluorescence in the neurosecretory cell boides in the hypotalamus and of their endings in the neurohypophysis. The best immunofluorescence results were obtained using 6 hours glyoxal-prefixation for the hypothalamus and 24 hours formalin-prefixation for the pituitary. The cross-reaction of the antibodies for oxytocin or vasopressin was tested on synthetic hormones that were bound to CNBR-activated agarose beads and mounted on glass sides. All anti-plasmas showed cross-reaction on beads containing the heterologou- antigen. The plasmas were purified by incubation with beads containing the heterologous hormone until the cross-reacting component had been removed. Using purified antibodies, the distribution of oxytocin and vasopressin cells within the HNS was investigated. More oxytocin containing cells were localized in the rostral part and more vasopressin in the caudal part of both, the supraoptic (SON) and paraventricular nucleus (PVN). Comparable percentages of oxytocin and vasopressin containing cells were found in the SON and PVN. The absolute amount of oxytocin containing cells was 2.5 times more in the SON than in the PVN, which seems to contradict the "classical" view that the PVN predominantly or entirely synthetizes oxytocin. In addition, fluorescence was found using antobodies against vasopressin in the suprachiasmatic nucleus in Wistar rats and heterozygous Brattleboro rats, but not in this nucleus of homozygous Brattleboros.

摘要

本文探讨了一种免疫荧光方法的开发,该方法可使加压素和催产素在大鼠下丘脑 - 神经垂体系统(hnx)中实现特异性定位。通过将与甲状腺球蛋白共价结合的这些激素注射到兔子体内,制备了抗精氨酸加压素(AVP)、赖氨酸加压素(LVP)和催产素的抗体。接受加压素免疫的兔子出现尿崩症时期,而“hns”的组织学检查显示神经分泌系统完整,一些兔子的视上核内源性激素合成增加,神经垂体释放增加。接受催产素免疫的兔子每日饮水量与对照兔子相似。免疫荧光法测定的抗加压素抗体的产生过程显示出与放射免疫分析(RIA)测定的效价曲线截然不同的过程。免疫荧光法中使用的抗体的特异性也被发现与它们在RIA系统中的特异性有很大不同。因此,必须在免疫荧光方法本身内研究抗体的效价和特异性。使用新鲜冷冻的丙酮后固定的下丘脑或垂体,在HNS中无法获得免疫荧光的清晰定位。因此进行了预固定。预固定的类型和持续时间在关于下丘脑神经分泌细胞体及其在神经垂体中的终末的免疫荧光方面显示出截然不同的结果。下丘脑使用6小时乙二醛预固定,垂体使用24小时福尔马林预固定可获得最佳免疫荧光结果。在与CNBR活化的琼脂糖珠结合并固定在玻片上的合成激素上测试了抗催产素或抗加压素抗体的交叉反应。所有抗血清在含有异源抗原的珠子上均显示交叉反应。通过与含有异源激素的珠子孵育直至交叉反应成分被去除来纯化血清。使用纯化的抗体,研究了HNS内催产素和加压素细胞的分布。在视上核(SON)和室旁核(PVN)的前部,含催产素的细胞更多,在后部含加压素的细胞更多。在SON和PVN中发现含催产素和加压素细胞的百分比相当。SON中含催产素细胞的绝对数量比PVN中多2.5倍,这似乎与“经典”观点相矛盾,即PVN主要或完全合成催产素。此外,在Wistar大鼠和杂合布拉特洛伯大鼠的视交叉上核中使用抗加压素抗体发现有荧光,但在纯合布拉特洛伯大鼠的该核中未发现。

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