谷氨酸在三叉丘脑投射神经元中的定位:一项联合逆行转运-免疫组织化学研究。

K R Magnusson, J R Clements, A A Larson, J E Madl, A J Beitz
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引用次数: 49

摘要

三叉丘脑投射神经元是颅面区疼痛、温度和触觉知觉通路的重要组成部分。投射到丘脑的三叉神经所利用的神经递质是未知的。通过使用固定物修饰谷氨酸特异性单克隆抗体和谷氨酰胺酶多克隆抗血清,我们最近在三叉神经感觉复合体中发现了含有谷氨酸样免疫反应性(Glu-LI)和谷氨酰胺酶样免疫反应性的神经元。在本研究中,我们使用联合逆行运输-免疫组织化学技术来定位假定的谷氨酸能三叉丘脑神经元。将逆行示踪剂小麦胚芽凝集素结合辣根过氧化物酶(WGA:HRP)注射到丘脑腹后内侧(VPM)后,被WGA:HRP和Glu-LI双重标记的神经元分布在主感觉核(Pr5)中最多,其次是内插核(Sp5I)和尾核(Sp5C)。在Pr5和Sp5I中,Glu-LI双标记的投射神经元的平均百分比约为60-70%,Sp5C中为40%。Sp5C中大多数双标记谱位于大细胞层,而不是边缘层和胶状物质层。一个大的注射部位扩散到丘脑层内核和中下核——与伤害性信息处理有关的区域——导致Sp5C中单标记和双标记投射轮廓的比例增加。这些结果表明谷氨酸可能是位于Sp5I和Pr5的大多数三叉丘脑投射神经元的神经递质。然而,基于解剖学关联,谷氨酸似乎不是Sp5C神经元向丘脑传递伤害性信息的主要递质。
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Localization of glutamate in trigeminothalamic projection neurons: a combined retrograde transport-immunohistochemical study.

Trigeminothalamic projection neurons are important components of the pathways for conscious perception of pain, temperature, and tactile sensation from the orofacial region. The neurotransmitters utilized by trigeminal neurons projecting to the thalamus are unknown. By use of a monoclonal antibody specific for fixative-modified glutamate and a polyclonal antiserum against glutaminase, we recently identified neurons in the trigeminal sensory complex that contain glutamate-like immunoreactivity (Glu-LI) and glutaminase-like immunoreactivity. In the present study, we utilized combined retrograde transport-immunohistochemical techniques to localize putative glutamatergic trigeminothalamic neurons. Following injection of the retrograde tracer, wheatgerm agglutinin conjugated to horseradish peroxidase (WGA:HRP), into the ventroposterior medial thalamus (VPM), the number of neuronal profiles that were double-labeled with WGA:HRP and Glu-LI was greatest in principal sensory nucleus (Pr5), followed by subnuclei interpolaris (Sp5I) and caudalis (Sp5C). The average percentages of projection neurons double-labeled with Glu-LI were approximately 60-70% in Pr5 and Sp5I and 40% in Sp5C. The majority of double-labeled profiles in Sp5C were located in the magnocellular layer, as opposed to the marginal and substantia gelatinosa layers. A large injection site that spread into the intralaminar thalamic nuclei and nucleus submedius--areas implicated in the processing of nociceptive information--resulted in an increase in the ratio of single-labeled to double-labeled projection profiles in Sp5C. These results suggest that glutamate may be the neurotransmitter for a majority of trigeminothalamic projection neurons located in Sp5I and Pr5. However, on the basis of anatomical association, glutamate does not appear to be the major transmitter for neurons in Sp5C that forward nociceptive information to the thalamus.

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