Mercuric chloride-induced gastrin/cholecystokinin 8 immunoreactivity in the central nervous system of the terrestrial slug Semperula maculata: an immunohistochemical study.

Q4 Neuroscience Invertebrate Neuroscience Pub Date : 2013-12-01 Epub Date: 2013-08-18 DOI:10.1007/s10158-013-0162-0
Sunil Londhe, Nitin Kamble
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引用次数: 1

Abstract

We measured the immunoreactivity of the neuropeptide gastrin cholecystokinin 8 (gastrin/CCK 8) in neurons of the terrestrial slug Semperula maculata following acute treatment with mercuric chloride (HgCl2). The distribution of gastrin/CCK 8 was analyzed in neurons of different regions, specifically from cerebral ganglia (procerebrum (pro-c), mesocerebrum (meso-c) and metacerebrum (meta-c). In the control group, neurons of pedal, pleural, parietal and visceral ganglia showed positive immunoreactivity using vertebrate antiserum against gastrin/CCK 8. Gastrin/CCK 8 immunoreactivity was also seen in the fibers and neuropil region of all ganglia. In the cerebral ganglion, 10, 12 and 8 % of the neurons from pro-c, meso-c and meta-c, respectively, were stained with the antibody. The immunostaining was increased in neurons (giant, large, medium and small) after HgCl2 treatment. The treatment greatly increased the mucin content within the neurons. Exposure to HgCl2 enhanced gastrin immunoreactivity in the neurons and this increased with time. Results are discussed in the context of neuropathology in cerebral ganglia associated with the feeding behavior of Semperula maculata.

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氯化汞诱导的无斑点陆鼻涕虫中枢神经系统胃泌素/胆囊收缩素8免疫反应性:免疫组织化学研究
我们测量了经氯化汞(HgCl2)急性治疗后,陆地蛞虫Semperula maculata神经元中神经肽胃泌素胆囊收缩素8 (gastrin/ cck8)的免疫反应性。分析胃泌素/ cck8在不同区域神经元的分布,特别是在大脑神经节(前脑(pro-c),中脑(meso-c)和中脑(meta-c)。在对照组中,足神经节、胸膜神经节、顶节和内脏神经节神经元使用抗胃泌素/ cck8的脊椎动物抗血清显示出阳性免疫反应。胃泌素/ cck8免疫反应性也见于所有神经节的纤维和神经pil区。在大脑神经节中,前c、中c和后c分别有10%、12%和8%的神经元被抗体染色。HgCl2处理后神经元(巨、大、中、小)免疫染色增加。该处理显著增加了神经元内的粘蛋白含量。暴露于HgCl2可增强神经元的胃泌素免疫反应性,且随时间增加而增强。结果讨论了在神经病理学的背景下,在神经节与进食行为有关的无斑田鼠。
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Invertebrate Neuroscience
Invertebrate Neuroscience NEUROSCIENCES-
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>12 weeks
期刊介绍: Invertebrate Neurosciences publishes peer-reviewed original articles, reviews and technical reports describing recent advances in the field of invertebrate neuroscience. The journal reports on research that exploits the simplicity and experimental tractability of the invertebrate preparations to underpin fundamental advances in neuroscience. Articles published in Invertebrate Neurosciences serve to highlight properties of signalling in the invertebrate nervous system that may be exploited in the field of antiparisitics, molluscicides and insecticides. Aspects of particular interest include: Functional analysis of the invertebrate nervous system; Molecular neuropharmacology and toxicology; Neurogenetics and genomics; Functional anatomy; Neurodevelopment; Neuronal networks; Molecular and cellular mechanisms of behavior and behavioural plasticity.
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