Distribution of NADPH-diaphorase and nitric oxide synthase in the trigeminal ganglion and mesencephalic trigeminal nucleus of the cat. A histochemical and immunohistochemical study.

Acta anatomica Pub Date : 1998-01-01 DOI:10.1159/000046498
N Lazarov, A Dandov
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引用次数: 26

Abstract

The trigeminal ganglion (TrG) and mesencephalic trigeminal nucleus (MTN) neurons are involved in the transmission of orofacial sensory information. The presence of nitric oxide (NO), a putative neurotransmitter substance in the nervous system, was examined in the cat TrG and MTN using nicotinamide adenine dinucleotide phosphate diaphorase (NADPH-d) histochemistry and nitric oxide synthase (NOS) immunohistochemistry. In the TrG, where the majority of the trigeminal primary afferent perikarya are located, most of the intensely NADPH-d/ NOS-stained cells were small in size and distributed randomly throughout the ganglion. The medium-sized neurons were moderately stained. A plexus of pericellular varicose arborizations around large unstained ganglion cells and densely stained fibers in-between could also be observed. In the caudal part of the MTN, both NADPH-d activity and NOS immunoreactivity was present in MTN neurons. In addition, a few scattered NADPH-d/NOS-containing neurons were found in the mesencephalic-pontine junction part of the nucleus. In contrast, only nerve fibers and their terminals were present at a more rostral level in the mid- and rostral MTN. MTN neuronal perikarya were enveloped in fine basket-like NADPH-d/ NOS-positive networks. Differential expression patterns of NOS and its marker NADPH-d suggest that trigeminal sensory information processing in the cat MTN is controlled by nitrergic input through different mechanisms. We introduce the concept that NO can act as a neurotransmitter in mediating nociceptive and proprioceptive information from periodontal mechanoreceptors but may also participate in modulating the activity of jaw-closing muscle afferent MTN neurons.

猫三叉神经节和中脑三叉核中nadph -脱氢酶和一氧化氮合酶的分布。组织化学和免疫组织化学研究。
三叉神经节(TrG)和中脑三叉核(MTN)神经元参与口面感觉信息的传递。采用烟酰胺腺嘌呤二核苷酸磷酸二磷酸酯酶(NADPH-d)组织化学和一氧化氮合酶(NOS)免疫组织化学检测猫TrG和MTN中一氧化氮(NO)的存在,一氧化氮是神经系统中一种假定的神经递质物质。在三叉神经主要传入核外核所在的TrG中,大多数NADPH-d/ nos染色强烈的细胞体积较小,在整个神经节中随机分布。中等大小的神经元中度染色。在大的未染色的神经节细胞周围和密集染色的纤维周围也可以观察到细胞周围的静脉曲张丛。在MTN尾侧,MTN神经元NADPH-d活性和NOS免疫反应性均存在。此外,在核的中脑-桥脑交界处发现少量分散的含有NADPH-d/ nos的神经元。相反,在中侧和吻侧MTN中,只有神经纤维及其末端存在于吻侧水平。MTN神经元核周被精细的篮状NADPH-d/ nos阳性网络包裹。NOS及其标志物NADPH-d的差异表达模式提示猫MTN三叉神经感觉信息加工受氮输入的不同机制控制。我们介绍了一氧化氮可以作为神经递质介导牙周机械感受器的伤害和本体感受信息,但也可能参与调节下颌肌传入MTN神经元的活动。
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