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缺血诱导的神经元细胞死亡和应激反应。

Ischemia-induced neuronal cell death and stress response.

作者信息

Ogawa Satoshi, Kitao Yasuko, Hori Osamu

机构信息

Department of Neuroanatomy, Kanazawa University Medical School, Takara-machi, Kanazawa City, Ishikawa, Japan.

出版信息

Antioxid Redox Signal. 2007 May;9(5):573-87. doi: 10.1089/ars.2006.1516.

Abstract

Neuronal cell death is a major feature of various diseases, including brain ischemia, neuronal degenerative diseases, and traumatic injury, suggesting the importance of investigating the mechanisms that mediate neuronal cell death. Although the various factors that contribute to brain ischemia have been defined and the mechanism through which each factor causes neuronal cell death has been investigated, definite strategies have not been established. In this brief review, we focus on two important mechanisms that contribute to the pathogenesis of brain ischemia. First, we discuss the glutamate theory, a proposed mechanism for the understanding of ischemia-induced neuronal cell death. Second, an accumulation of recent molecular neurobiology evidence regarding the dysfunction of a cellular organelle, the endoplasmic reticulum (ER), suggests that it plays a major role in the pathogenesis of neuronal cell death. Whereas the former theory reflects the role of neuron-specific factors in the induction of cell death, the stress response of the ER for maintenance of its function is regarded as a defense mechanism. Because hypoxia, another major factor in ischemia, results in further dysfunction of the ER, studies on the malfunction of this cellular organelle may facilitate the development of novel strategies to block ischemia-induced cell death.

摘要

神经元细胞死亡是包括脑缺血、神经元退行性疾病和创伤性损伤在内的多种疾病的主要特征,这表明研究介导神经元细胞死亡的机制具有重要意义。尽管导致脑缺血的各种因素已被明确,且每个因素导致神经元细胞死亡的机制也已得到研究,但尚未确立明确的策略。在这篇简短的综述中,我们聚焦于导致脑缺血发病机制的两个重要机制。首先,我们讨论谷氨酸理论,这是一种用于理解缺血诱导的神经元细胞死亡的机制。其次,最近关于细胞器内质网(ER)功能障碍的分子神经生物学证据不断积累,表明其在神经元细胞死亡的发病机制中起主要作用。前者理论反映了神经元特异性因素在诱导细胞死亡中的作用,而内质网为维持其功能的应激反应则被视为一种防御机制。由于缺氧是缺血的另一个主要因素,会导致内质网进一步功能障碍,因此对这种细胞器功能障碍的研究可能有助于开发阻断缺血诱导的细胞死亡的新策略。

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