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下丘脑背内侧核神经元支配室旁核中合成促甲状腺激素释放激素的神经元。

Hypothalamic dorsomedial nucleus neurons innervate thyrotropin-releasing hormone-synthesizing neurons in the paraventricular nucleus.

作者信息

Mihály E, Fekete C, Légrádi G, Lechan R M

机构信息

Division of Endocrinology, Diabetes, Metabolism and Molecular Medicine, Tupper Research Institute and Department of Medicine, New England Medical Center, Boston, MA 02111, USA.

出版信息

Brain Res. 2001 Feb 9;891(1-2):20-31. doi: 10.1016/s0006-8993(00)03094-8.

Abstract

To determine whether the hypothalamic dorsomedial nucleus (DMN) may serve as a relay center for the central actions of leptin on thyrotropin-releasing hormone (TRH)-synthesizing neurons in the paraventricular nucleus (PVN), axonal projections from the DMN to TRH-containing neurons in the PVN were studied using the anterogradely transported marker substance, Phaseolus vulgaris-leucoagglutinin (PHA-L). Stereotaxic injections of PHA-L were targeted to the mid-dorsal and mid-ventral portions of the DMN. After 10-14-day survival, the brains were prepared for immunohistochemistry and immunostained with an antibody directed against PHA-L. Focal injections confined to the DMN were identified in 14 animals and gave rise to a fiber bundle that entered the PVN at the caudal pole of the nucleus, densely innervating all parvocellular subdivisions of the PVN. In double-labeled preparations using antisera to PHA-L and preproTRH 178-199, the latter as a marker for TRH-containing neurons in the PVN, proTRH-IR neurons were observed to be enmeshed in a network of PHA-L-containing fibers. When the injection site covered the entire DMN or the mid-dorsal part of the DMN, PHA-L-containing axon varicosities were juxtaposed to approximately 97 and 90% of proTRH neurons, respectively, in all parvocellular subdivisions of the PVN, and by ultrastructural analysis were shown to be synaptic. In contrast, when the injection site was centered primarily in the mid-ventral part of the DMN, only approximately 52% of proTRH-synthesizing neurons appeared to be innervated by PHA-L-containing axons. These data demonstrate that a major projection pathway exists from the DMN, specifically to TRH-producing neurons in the PVN, and suggest that the DMN is anatomically situated to exert a regulatory effect on TRH-synthesizing neurons in the PVN.

摘要

为了确定下丘脑背内侧核(DMN)是否可能作为瘦素对室旁核(PVN)中促甲状腺激素释放激素(TRH)合成神经元的中枢作用的中继中心,使用顺行运输标记物质菜豆白细胞凝集素(PHA-L)研究了从DMN到PVN中含TRH神经元的轴突投射。将PHA-L立体定位注射到DMN的中背部和中腹部。在存活10 - 14天后,制备大脑用于免疫组织化学,并使用针对PHA-L的抗体进行免疫染色。在14只动物中鉴定出局限于DMN的局灶性注射,产生了一束纤维,该纤维束在核的尾极进入PVN,密集地支配PVN的所有小细胞亚群。在使用抗PHA-L和前促甲状腺激素释放激素178 - 199抗血清的双重标记制剂中,后者作为PVN中含TRH神经元的标记物,观察到前促甲状腺激素释放激素免疫反应性(proTRH-IR)神经元被包含PHA-L的纤维网络所包围。当注射部位覆盖整个DMN或DMN的中背部时,在PVN的所有小细胞亚群中,含PHA-L的轴突膨体分别与约97%和90%的proTRH神经元并列,并且通过超微结构分析显示为突触。相反,当注射部位主要集中在DMN的中腹部时,似乎只有约52%的proTRH合成神经元由含PHA-L的轴突支配。这些数据表明存在一条从DMN到PVN中产生TRH的神经元的主要投射途径,并表明DMN在解剖学上处于对PVN中TRH合成神经元发挥调节作用的位置。

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