Sancesario G, Reiner A, Figueredo-Cardenas G, Morello M, Bernardi G
Department of Neurology, University of Rome Tor Vergata.
Neuroscience. 1996 May;72(2):365-75. doi: 10.1016/0306-4522(95)00538-2.
This study used NADPH diaphorase (NADPHd) histochemistry and neuronal nitric oxide synthase immunocytochemistry to examine the localization of nitric oxide synthase in the choroid plexus of the lateral ventricles and the fourth ventricle of rat brain. That the NADPHd reaction product in choroid plexus was specific to nitric oxide synthase was evaluated: (i) by comparison to immunocytochemical labelling for nitric oxide synthase; and (ii) by comparing NADPHd histochemical staining in choroid plexus and brain (rich in nitric oxide synthase-positive and NADPHd-positive neurons) in the presence or absence of iodonium diphenyl or dichlorophenolindophenol, two potent albeit non-selective inhibitors of nitric oxide synthase activity. In brain, NADPHd histochemistry homogeneously stained neuronal cell bodies, axons and dendrites, while it produced particulate cytoplasmic staining of all epithelial cells in the choroid plexuses of the lateral and fourth ventricles. Within the choroid plexus of the lateral ventricles, NADPHd-positive nerve fibres were also observed around blood vessels and coursing among the epithelial cells. The distribution of immunoreactivity for nitric oxide synthase in brain and in nerve fibres in the choroid plexuses of the lateral ventricles resembled the distribution of histochemical labelling for NADPHd. Choroid plexus epithelial cells were, however, devoid of nitric oxide synthase immunoreactivity. Consistent with this, iodonium diphenyl and dichlorophenolindophenol (0.1 mM) inhibited NADPHd histochemical staining in brain neurons and in choroid plexus nerve fibres, but not in choroid plexus epithelial cells. These results demonstrate that the choroid plexus of the lateral ventricles in rat brain is innervated by nitric oxide synthase-positive nerve fibres. These nitric oxide synthase-positive nerve fibres may have an important role in the regulation of cerebrospinal fluid balance. Although choroid plexus epithelial cells contain an enzyme with NADPHd activity, this enzyme is not nitric oxide synthase.
本研究采用还原型辅酶Ⅱ黄递酶(NADPHd)组织化学和神经元型一氧化氮合酶免疫细胞化学方法,检测一氧化氮合酶在大鼠脑侧脑室和第四脑室脉络丛中的定位。通过以下方式评估脉络丛中NADPHd反应产物对一氧化氮合酶的特异性:(i)与一氧化氮合酶的免疫细胞化学标记进行比较;(ii)在存在或不存在二苯基碘鎓或二氯酚靛酚(两种虽非选择性但有效的一氧化氮合酶活性抑制剂)的情况下,比较脉络丛和脑(富含一氧化氮合酶阳性和NADPHd阳性神经元)中的NADPHd组织化学染色。在脑中,NADPHd组织化学均匀地染神经元细胞体、轴突和树突,而在侧脑室和第四脑室脉络丛中,它使所有上皮细胞产生颗粒状细胞质染色。在侧脑室脉络丛内,还观察到血管周围和上皮细胞之间有NADPHd阳性神经纤维。脑和侧脑室脉络丛神经纤维中一氧化氮合酶免疫反应性的分布类似于NADPHd组织化学标记的分布。然而,脉络丛上皮细胞缺乏一氧化氮合酶免疫反应性。与此一致的是,二苯基碘鎓和二氯酚靛酚(0.1 mM)抑制脑神经元和脉络丛神经纤维中的NADPHd组织化学染色,但不抑制脉络丛上皮细胞中的染色。这些结果表明,大鼠脑侧脑室脉络丛受一氧化氮合酶阳性神经纤维支配。这些一氧化氮合酶阳性神经纤维可能在脑脊液平衡调节中起重要作用。尽管脉络丛上皮细胞含有一种具有NADPHd活性的酶,但这种酶不是一氧化氮合酶。