Griffin Gerald D, Flanagan-Cato Loretta M
Department of Psychology, University of Pennsylvania, Philadelphia, PA 19104, USA.
Physiol Behav. 2009 May 25;97(2):151-6. doi: 10.1016/j.physbeh.2009.02.019. Epub 2009 Feb 28.
The hypothalamic ventromedial nucleus (VMH) displays sexual dichotomies in its overall size, neurochemistry, and neuronal morphology. These differences may underlie the sex differences observed in functions mediated by the VMH, such as reproductive behaviors and energy balance. A previous Golgi impregnation analysis of VMH dendrites reported sex differences in total dendrite length in the ventrolateral region of the VMH. The present study tested the hypothesis that this sex difference is localized to a specific dendrite type. VMH neurons were visualized with Golgi impregnation. Overall, male rats displayed significantly longer dendrites than females for VMH neurons. This sex difference was apparent in both the dorsomedial and the ventrolateral subdivisions of the VMH. When dendrites were classified based on dendrite type, namely long primary, short primary and secondary dendrites, the increased length for males was observed for all dendrite types. Furthermore, when long primary dendrites were categorized according to whether they extended in the dorsomedial, ventrolateral, ventromedial or dorsolateral direction, the sex difference in length occurred for all directions. These results indicate that the previously identified dendrite categories for VMH neurons are integral to VMH circuitry for both males and females. Given that the sex difference in dendrite length applied to all dendrite types, the elongated male VMH dendrites may provide additional sites to process input from both local interneurons and extranuclear afferents.
下丘脑腹内侧核(VMH)在其整体大小、神经化学和神经元形态方面表现出性别差异。这些差异可能是VMH介导的功能中观察到的性别差异的基础,如生殖行为和能量平衡。先前一项对VMH树突的高尔基染色分析报告称,VMH腹外侧区域的总树突长度存在性别差异。本研究检验了这一假设,即这种性别差异局限于特定的树突类型。通过高尔基染色观察VMH神经元。总体而言,雄性大鼠VMH神经元的树突明显比雌性大鼠的长。这种性别差异在VMH的背内侧和腹外侧亚区均很明显。当根据树突类型对树突进行分类时,即长初级树突、短初级树突和次级树突,所有树突类型的雄性树突长度均增加。此外,当根据长初级树突是向背内侧、腹外侧、腹内侧还是背外侧方向延伸进行分类时,所有方向的长度均存在性别差异。这些结果表明,先前确定的VMH神经元树突类别对于雄性和雌性的VMH神经回路都是不可或缺的。鉴于树突长度的性别差异适用于所有树突类型,雄性VMH树突的延长可能为处理来自局部中间神经元和核外传入神经的输入提供额外的位点。