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首页> 外文期刊>Archives of Toxicology >Attenuation by methyl mercury and mercuric sulfide of pentobarbital induced hypnotic tolerance in mice through inhibition of ATPase activities and nitric oxide production in cerebral cortex
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Attenuation by methyl mercury and mercuric sulfide of pentobarbital induced hypnotic tolerance in mice through inhibition of ATPase activities and nitric oxide production in cerebral cortex

机译:甲基汞和硫化汞对戊巴比妥诱导的小鼠催眠耐受的抑制作用是通过抑制大脑皮层中的ATPase活性和一氧化氮产生

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摘要

This study is aimed at exploring the possible mechanism of hypnosis-enhancing effect of HgS or cinnabar (a traditional Chinese medicine containing more than 95% HgS) in mice treated with pentobarbital. We also examined whether the effect of HgS is different from that of the well-known methyl mercury (MeHg). After a short period (7 days) of oral administration to mice, a nontoxic dose (0.1 g/kg) of HgS not only significantly enhanced pentobarbital-induced hypnosis but also attenuated tolerance induction; while a higher dose (1 g/kg) of HgS or cinnabar exerted an almost irreversible enhancing effect on pentobarbital-hypnosis similar to that of MeHg (2 mg/kg) tested, which was still effective even after 10 or 35 days cessation of administration. To study comparatively the effects of different mercury forms from oral administration of MeHg and HgS on membrane ATPase activities of experimental mice, analysis of the Hg content in the cerebral cortex revealed that correlated with the decrease of Na+/K+-ATPase and Ca2+-ATPase activities. Furthermore, NO levels of blood but not that of cerebral cortex were also decreased by mercuric compounds. Although pentobarbital alone enhanced cytochrome p450–2C9 in time dependent manner, all of mercurial compounds tested had no such effect. All of these findings indicated that the mercurial compounds including cinnabar, HgS and MeHg exert a long-lasting enhancing hypnotic activity without affecting pentobarbital metabolism, which provides evidence-based sedative effect of cinnabar used in Chinese traditional medicine for more than 2,000 years. The nontoxic HgS dosing (0.1 g/kg/day) for consecutive 7 days is perhaps useful for delaying or preventing pentobarbital-tolerance.
机译:这项研究旨在探讨HgS或朱砂(一种含有95%以上HgS的中药)在戊巴比妥治疗的小鼠中增强催眠作用的可能机制。我们还检查了HgS的作用是否与众所周知的甲基汞(MeHg)的作用不同。在短时间(7天)对小鼠口服后,无毒剂量(0.1 g / kg)的HgS不仅显着增强了戊巴比妥诱导的催眠作用,而且减弱了对耐受的诱导。而较高剂量的HgS或朱砂(1 g / kg)对戊巴比妥催眠的作用几乎是不可逆的,与测试的MeHg(2 mg / kg)相似,甚至在停药10或35天后仍然有效。为了比较研究口服MeHg和HgS的不同汞形式对实验小鼠膜ATPase活性的影响,对大脑皮层中Hg含量的分析显示与Na + / K + -ATPase和Ca2 + -ATPase活性。此外,汞化合物还能降低血液中的NO水平,但不会降低大脑皮层中的NO水平。尽管单独的戊巴比妥以时间依赖性方式增强细胞色素p450-2C9,但所有测试的汞化合物均无此作用。所有这些发现表明,包括朱砂,HgS和MeHg在内的汞化合物在不影响戊巴比妥新陈代谢的情况下发挥着持久的催眠活性,从而提供了超过2000年的循证镇静朱砂镇静作用。连续7天无毒HgS剂量(0.1 g / kg /天)可能对延迟或预防戊巴比妥耐受性有用。

著录项

  • 来源
    《Archives of Toxicology》 |2008年第6期|343-353|共11页
  • 作者单位

    Institute of Biotechnology College of Engineering Southern Taiwan University Tainan Taiwan;

    Institute of Biotechnology College of Engineering Southern Taiwan University Tainan Taiwan;

    Institute of Biotechnology College of Engineering Southern Taiwan University Tainan Taiwan;

    Institute of Biotechnology College of Engineering Southern Taiwan University Tainan Taiwan;

    Institute of Pharmacology College of Medicine National Taiwan University No. 1 Section 1 Jen-Ai Road Taipei Taiwan ROC;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hypnosis; HgS; Cinnabar; ATPase; Nitric oxide;

    机译:催眠;HgS;朱砂;ATPase;一氧化氮;

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