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首页> 外文期刊>Neurochemical Research >Protective Effects of Some Creatine Derivatives in Brain Tissue Anoxia
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Protective Effects of Some Creatine Derivatives in Brain Tissue Anoxia

机译:某些肌酸衍生物对脑组织缺氧的保护作用

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摘要

Some derivatives more lipophylic than creatine, thus theoretically being capable to better cross the blood–brain barrier, were studied for their protective effect in mouse hippocampal slices. We found that N-amidino-piperidine is harmful to brain tissue, and that phosphocreatine is ineffective. Creatine, creatine–Mg-complex (acetate) and phosphocreatine–Mg-complex (acetate) increased the latency to population spike disappearance during anoxia. Creatine and creatine–Mg-complex (acetate) also increased the latency of anoxic depolarization, while the delay induced by phosphocreatine–Mg-complex (acetate) was of borderline significance (P = 0.056). Phosphocreatine–Mg-complex (acetate) significantly reduced neuronal hyperexcitability during anoxia, an effect that no other compound (including creatine itself) showed. For all parameters except reduced hyperexcitability the effects statistically correlated with tissue levels of creatine or phosphocreatine. Summing up, exogenous phosphocreatine and N-amidino piperidine are not useful for brain protection, while chelates of both creatine and phosphocreatine do replicate some of the known protective effects of creatine. In addition, phosphocreatine–Mg-complex (acetate) also reduced neuronal hyperexcitability during anoxia.
机译:研究了一些比肌酸更亲脂的衍生物,因此在理论上能够更好地穿越血脑屏障,研究了它们对小鼠海马切片的保护作用。我们发现N-ami基-哌啶对脑组织有害,而磷酸肌酸则无效。肌酸,肌酸-镁复合物(乙酸盐)和磷酸肌酸-镁复合物(乙酸盐)增加了缺氧时种群高峰消失的潜伏期。肌酸和肌酸-镁复合物(乙酸盐)也增加了缺氧去极化的潜伏期,而磷酸肌酸-镁-复合物(乙酸盐)引起的延迟具有临界意义(P = 0.056)。磷酸肌酸-镁复合物(乙酸盐)可显着降低缺氧时神经元的过度兴奋性,其他化合物(包括肌酸本身)均无此作用。对于除降低的过度兴奋性以外的所有参数,其影响与肌酸或磷酸肌酸的组织水平在统计学上相关。总结起来,外源性磷酸肌酸和N-ami基哌啶不能用于脑保护,而肌酸和磷酸肌酸的螯合剂确实可以复制某些已知的肌酸保护作用。另外,磷酸肌酸-镁复合物(乙酸盐)还可以减少缺氧时神经元的过度兴奋。

著录项

  • 来源
    《Neurochemical Research》 |2008年第5期|765-775|共11页
  • 作者单位

    Department of Neuroscience Ophthalmology and Genetics University of Genova Via De Toni 5 Genova 16132 Italy;

    Section of Pharmacology Department of Oncology Biology and Genetics University of Genova Genova Italy;

    Department of Neuroscience Ophthalmology and Genetics University of Genova Via De Toni 5 Genova 16132 Italy;

    Institute of Macromolecular Compounds Russian Academy of Sciences St. Petersburg Russia;

    Institute of Macromolecular Compounds Russian Academy of Sciences St. Petersburg Russia;

    Department of Neuroscience Ophthalmology and Genetics University of Genova Via De Toni 5 Genova 16132 Italy;

    Section of Pharmacology Department of Oncology Biology and Genetics University of Genova Genova Italy;

    Institute of Macromolecular Compounds Russian Academy of Sciences St. Petersburg Russia;

    Department of Neuroscience Ophthalmology and Genetics University of Genova Via De Toni 5 Genova 16132 Italy;

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

    Brain; Ischemia; Anoxia; Chelates; Transporter deficiency; Neuroprotection;

    机译:脑;缺血;缺氧;螯合物;转运蛋白缺乏症;神经保护;

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