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首页> 外文期刊>Molecular Neurobiology >Endogenous Expression of ODN-Related Peptides in Astrocytes Contributes to Cell Protection Against Oxidative Stress: Astrocyte-Neuron Crosstalk Relevance for Neuronal Survival
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Endogenous Expression of ODN-Related Peptides in Astrocytes Contributes to Cell Protection Against Oxidative Stress: Astrocyte-Neuron Crosstalk Relevance for Neuronal Survival

机译:在星形胶质细胞中的内源性相关肽的表达有助于对氧化应激的细胞保护:星形细胞 - 神经元串扰对神经元生存的相关性

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摘要

Astroglial cells are important actors in the defense of brain against oxidative stress injuries. Glial cells synthesize and release the octadecaneuropeptide ODN, a diazepam-binding inhibitor (DBI)-related peptide, which acts through its metabotropic receptor to protect neurons and astrocytes from oxidative stress-induced apoptosis. The purpose of the present study is to examine the contribution of the endogenous ODN in the protection of astrocytes and neurons from moderate oxidative stress. The administration of H2O2 (50 mu M, 6 h) induced a moderate oxidative stress in cultured astrocytes, i.e., an increase in reactive oxygen species, malondialdehyde, and carbonyl group levels, but it had no effect on astrocyte death. Mass spectrometry and QPCR analysis revealed that 50 mu M H2O2 increased ODN release and DBI mRNA levels. The inhibition of ODN release or pharmacological blockage of the effects of ODN revealed that in these conditions, 50 mu M H2O2 induced the death of astrocytes. The transfection of astrocytes with DBI siRNA increased the vulnerability of cells to moderate stress. Finally, the addition of 1 nM ODN to culture media reversed cell death observed in DBI-deficient astrocytes. The treatment of neurons with media from 50 mu M H2O2-stressed astrocytes significantly reduced the neuronal death induced by H2O2; this effect is greatly attenuated by the administration of an ODN metabotropic receptor antagonist. Overall, these results indicate that astrocytes produce authentic ODN, notably in a moderate oxidative stress situation, and this glio- and neuro-protective agent may form part of the brain defense mechanisms against oxidative stress injury.
机译:晕厥细胞是防止氧化应激损伤的大脑中的重要作用。胶质细胞合成并释放十八烷酮肽ODN,一种二氮酸泮结合抑制剂(DBI)的肽,其通过其代谢剂受体作用,以保护神经元和星形胶质细胞免受氧化应激诱导的凋亡。本研究的目的是研究内源性ODN在中等氧化应激保护星形胶质细胞和神经元的贡献。 H 2 O 2(50μm,6h)的给药在培养的星形胶质细胞中诱导中等氧化应激,即反应性氧物质,丙二醛和羰基水平的增加,但它对星形胶质细胞死亡没有影响。质谱和QPCR分析显示,50μmH2O2增加了ODN释放和DBI mRNA水平。 ODN释放的抑制作用或ODN的作用的抑制表明,在这些条件下,50μmH2O2诱导星形胶质细胞的死亡。与DBI siRNA的星形胶质细胞转染增加细胞脆弱性以中度应激。最后,在DBI缺陷的星形胶质细胞中,在DBI缺陷的星形胶质细胞中添加了1nm ofdn培养培养基逆转细胞死亡。从50μmH2O2胁迫的星形胶质细胞的培养基治疗神经元显着降低了H2O2诱导的神经元死亡;通过给予ODN代谢受体拮抗剂的施用大大衰减了这种效果。总体而言,这些结果表明星形胶质细胞产生正宗的ODN,特别是在适度的氧化应激状况中,并且该胶质和神经保护剂可以形成抗氧化应激损伤的一部分脑防御机制。

著录项

  • 来源
    《Molecular Neurobiology》 |2018年第6期|共16页
  • 作者单位

    Univ Tunis El Manar Fac Sci Tunis Lab Funct Neurophysiol &

    Pathol Res Unit UR 11ES09 Tunis 2092;

    Univ Tunis El Manar Fac Sci Tunis Lab Funct Neurophysiol &

    Pathol Res Unit UR 11ES09 Tunis 2092;

    Univ Rouen Normandie IRIB Lab Neuronal &

    Neuroendocrine Commun &

    Differenti INSERM U1239 F;

    Univ Tunis El Manar Fac Sci Tunis Lab Funct Neurophysiol &

    Pathol Res Unit UR 11ES09 Tunis 2092;

    Univ Tunis El Manar Fac Sci Tunis Lab Funct Neurophysiol &

    Pathol Res Unit UR 11ES09 Tunis 2092;

    Univ Rouen Normandie IRIB Lab Neuronal &

    Neuroendocrine Commun &

    Differenti INSERM U1239 F;

    Univ Rouen Normandie IRIB Reg Prote Platform Pissaro Mont St Aignan France;

    Univ Rouen Normandie IRIB Lab Neuronal &

    Neuroendocrine Commun &

    Differenti INSERM U1239 F;

    Univ Tunis El Manar Fac Med Tunis Elect Microscopy Lab Tunis Tunisia;

    Univ Rouen Normandie Int Associated Lab Samuel Champlain Mont St Aignan France;

    Univ Rouen Normandie IRIB Lab Neuronal &

    Neuroendocrine Commun &

    Differenti INSERM U1239 F;

    Univ Rouen Normandie IRIB Lab Neuronal &

    Neuroendocrine Commun &

    Differenti INSERM U1239 F;

    Univ Tunis El Manar Fac Sci Tunis Lab Funct Neurophysiol &

    Pathol Res Unit UR 11ES09 Tunis 2092;

    Univ Rouen Normandie IRIB Lab Neuronal &

    Neuroendocrine Commun &

    Differenti INSERM U1239 F;

    Univ Tunis El Manar Fac Sci Tunis Lab Funct Neurophysiol &

    Pathol Res Unit UR 11ES09 Tunis 2092;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 人体生理学;
  • 关键词

    Gliopeptide ODN; Moderate oxidative stress; Reactive oxygen species; Cell death; Glio- and neuro-protection;

    机译:Gliopeptide ODN;中度氧化应激;活性氧物种;细胞死亡;GLIO-和神经保护;

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