Tjälve H, Mejàre C, Borg-Neczak K
Department of Pharmacology and Toxicology, Faculty of Veterinary Medicine, Swedish University of Agricultural Sciences, Uppsala.
Pharmacol Toxicol. 1995 Jul;77(1):23-31. doi: 10.1111/j.1600-0773.1995.tb01909.x.
gamma-spectrometry and autoradiography were used to examine the axoplasmic flow of manganese in the olfactory nerves and to study the uptake of the metal in the brain after application of 54Mn2+ in the olfactory chambers of pikes. The results show that the 54Mn2+ is taken up in the olfactory receptor cells and is transported at a constant rate along the primary olfactory neurones into the brain. The maximal velocity for the transported 54Mn2+ was 2.90 +/- 0.21 mm/hr (mean +/- S.E.) at 10 degrees, which was the temperature used in the experiments. The 54Mn2+ accumulated in the entire olfactory bulbs, although most marked in central and caudal parts. The metal was also seen to migrate into large areas of the telencephalon, apparently mainly via the secondary olfactory axons present in the medial olfactory tract. A transfer along fibres of the medial olfactory tract probably also explains the labelling which was seen in the diencephalon down to the hypothalamus. The results also showed that there is a pathway connecting the two olfactory bulbs of the pike and that this can carry the metal. Our data further showed a marked accumulation of 54Mn2+ in the meningeal epithelium and in the contents of the meningeal sacs surrounding the olfactory bulbs. It appears from our study that manganese has the ability to pass the synaptic junctions between the primary and the secondary olfactory neurones in the olfactory bulbs and to migrate along secondary olfactory pathways into the telencephalon and the diencephalon.(ABSTRACT TRUNCATED AT 250 WORDS)
利用γ能谱分析和放射自显影技术研究了梭子鱼嗅神经中锰的轴浆运输,并在嗅腔中注入54Mn2+后研究了大脑中该金属的摄取情况。结果表明,54Mn2+被嗅感受器细胞摄取,并以恒定速率沿初级嗅神经元运输到大脑。在实验所用的10℃温度下,运输的54Mn2+的最大速度为2.90±0.21毫米/小时(平均值±标准误)。54Mn2+在整个嗅球中积累,尽管在中部和尾部最为明显。还观察到该金属迁移到端脑的大片区域,显然主要是通过内侧嗅束中的次级嗅轴突。沿内侧嗅束纤维的转移可能也解释了在间脑直至下丘脑看到的标记。结果还表明,梭子鱼的两个嗅球之间存在一条连接通路,并且该通路可以携带金属。我们的数据还进一步显示54Mn2+在脑膜上皮和嗅球周围脑膜囊的内容物中有明显积累。从我们的研究来看,锰似乎有能力穿过嗅球中初级和次级嗅神经元之间的突触连接,并沿次级嗅通路迁移到端脑和间脑。(摘要截短为250字)