Zhou Y, Mack P O, Ling E A
Department of Experimental Surgery, Singapore General Hospital, Singapore.
J Hirnforsch. 1998;39(2):119-27.
This study examined the distribution of reduced nicotinamide adenine dinucleotide phosphate diaphorase (NADPH-d) reactivity and nitric oxide synthase (NOS) immunoreactivity in the lumbosacral dorsal root ganglia (DRG) in male guinea pigs. A differential distribution of NADPH-d reactivity and NOS immunoreactivity was detected in neurons of DRG at different segmental levels. There were numerically more intensely stained NADPH-d and NOS reactive cells in the rostral (L1-L3) DRG compared with those at the caudal (L6-S4) levels. In the corresponding DRG, NADPH-d reactivity was not paralleled by NOS immunoreactivity. This was evidenced by the wide distribution of afferent neurons in the lumbosacral DRG stained for NADPH-d, yet only a small number of them exhibited NOS immunoreactivity. Double labelling study has shown that some of the NADPH-d positive neurons were NOS negative. Ultrastructurally, NADPH-d reaction product was associated with the membranes of various subcellular organelles, including the rough endoplasmic reticulum (rER), Golgi saccules, mitochondria and some segments of the nuclear envelop, whereas NOS immune-precipitate was patchily distributed throughout the cytoplasm. Present results suggest that nitric oxide (NO) may function as a neurotransmitter in the afferent pathways at lumbosacral segments. On the other hand, in view of their marked disparity in numbers and the lack of total one-to-one correspondence, it seems likely that the NOS positive neurons represent only a subpopulation of the NADPH-d positive cells in the lumbosacral DRG.
本研究检测了雄性豚鼠腰骶部背根神经节(DRG)中还原型烟酰胺腺嘌呤二核苷酸磷酸黄递酶(NADPH-d)反应性和一氧化氮合酶(NOS)免疫反应性的分布情况。在不同节段水平的DRG神经元中检测到NADPH-d反应性和NOS免疫反应性的差异分布。与尾端(L6-S4)水平相比,头端(L1-L3)DRG中NADPH-d和NOS反应性细胞的数量更多且染色更深。在相应的DRG中,NADPH-d反应性与NOS免疫反应性并不平行。这一点通过腰骶部DRG中NADPH-d染色的传入神经元广泛分布得到证明,但其中只有少数显示出NOS免疫反应性。双重标记研究表明,一些NADPH-d阳性神经元是NOS阴性的。超微结构上,NADPH-d反应产物与各种亚细胞器的膜相关,包括粗面内质网(rER)、高尔基囊泡、线粒体和核膜的一些节段,而NOS免疫沉淀物则散在分布于整个细胞质中。目前的结果表明,一氧化氮(NO)可能在腰骶部节段的传入通路中作为一种神经递质发挥作用。另一方面,鉴于它们在数量上的显著差异以及缺乏完全的一一对应关系,腰骶部DRG中NOS阳性神经元似乎仅代表NADPH-d阳性细胞的一个亚群。