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Sigma-1 Receptors and Neurodegenerative Diseases: Towards a Hypothesis of Sigma-1 Receptors as Amplifiers of Neurodegeneration and Neuroprotection

机译:Sigma-1受体和神经退行性疾病:Sigma-1受体作为神经退行性和神经保护作用的放大器的假说。

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摘要

Sigma-1 receptors are molecular chaperones that may act as pathological mediators and targets for novel therapeutic applications in neurodegenerative diseases. Accumulating evidence indicates that sigma-1 ligands can either directly or indirectly modulate multiple neurodegenerative processes, including excitotoxicity, calcium dysregulation, mitochondrial and endoplasmic reticulum dysfunction, inflammation, and astrogliosis. In addition, sigma-1 ligands may act as disease-modifying agents in the treatment for central nervous system (CNS) diseases by promoting the activity of neurotrophic factors and neural plasticity. Here, we summarize their neuroprotective and neurorestorative effects in different animal models of acute brain injury and chronic neurodegenerative diseases, and highlight their potential role in mitigating disease. Notably, current data suggest that sigma-1 receptor dysfunction worsens disease progression, whereas enhancement amplifies pre-existing functional mechanisms of neuroprotection and/or restoration to slow disease progression. Collectively, the data support a model of the sigma-1 receptor as an amplifier of intracellular signaling, and suggest future clinical applications of sigma-1 ligands as part of multi-therapy approaches to treat neurodegenerative diseases.
机译:Sigma-1受体是分子伴侣,可以充当神经退行性疾病中新的治疗应用的病理介质和靶标。越来越多的证据表明,sigma-1配体可以直接或间接调节多种神经退行性过程,包括兴奋性毒性,钙调节异常,线粒体和内质网功能障碍,炎症和星形胶质细胞变性。另外,sigma-1配体可通过促进神经营养因子的活性和神经可塑性来充当中枢神经系统(CNS)疾病治疗中的疾病改良剂。在这里,我们总结了它们在急性脑损伤和慢性神经退行性疾病的不同动物模型中的神经保护和神经修复作用,并突出了它们在缓解疾病中的潜在作用。值得注意的是,目前的数据表明,sigma-1受体功能异常会加重疾病的进程,而增强则会加剧神经保护和/或恢复的原有功能机制,从而减慢疾病的进程。总体而言,数据支持作为细胞内信号传导放大器的sigma-1受体模型,并建议sigma-1配体作为治疗神经退行性疾病的多种疗法的一部分在临床上的未来应用。

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