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自闭症谱系障碍中的兴奋效应、细胞应激反应和氧化还原稳态

Hormesis, cellular stress response, and redox homeostasis in autism spectrum disorders.

作者信息

Calabrese V, Giordano J, Ruggieri M, Berritta D, Trovato A, Ontario M L, Bianchini R, Calabrese E J

机构信息

Department of Biomedical and Biotechnological Sciences, School of Medicine, University of Catania, Catania, Italy.

Department of Clinical and Experimental Medicine, School of Medicine, University of Catania, Catania, Italy.

出版信息

J Neurosci Res. 2016 Dec;94(12):1488-1498. doi: 10.1002/jnr.23893. Epub 2016 Sep 19.

Abstract

In the United States, 1.1-1.5% of children have been diagnosed with autism spectrum disorders (ASD), corresponding to a 30% increase in incidence and prevalence. Social and communication impairments are the main signs and symptoms of ASD, and currently available medications have been ineffective in reducing these core deficits. Observational studies have indicated that children with ASD tend to show improved cognition and behavior after febrile illness, which is associated with alteration of metabolic pathways, leading to cellular stress responses and increased expression of heat shock proteins (Hsps). Sulforaphane and hydroxytyrosol, phytochemicals derived from cruciferous vegetables and extra virgin olive oil, respectively, can induce metabolic effects in cellular stress responses that are similar to those produced by fever. Thus, modulation of endogenous cellular defense mechanisms may be an innovative approach for therapeutic intervention in ASD and other disorders associated with neuroinflammation and neurodegeneration. This Review introduces the hormetic dose-response concept and presents possible mechanisms and applications for neuroprotection. We address the emerging role of Hsps in the neuroprotective network of redox stress-responsive mechanisms and propose the potential therapeutic utility of the nutritional antioxidants sulforaphane and hydroxytyrosol against particular signs and symptoms of ASD. We argue that such research findings must be approached with pragmatism and prudence. It is vital to capitalize on recent and ongoing investments in brain science research and to refine neuroscientific knowledge and capability for more accurate diagnosis and safe, effective, and ethically sound treatment of ASD and other neuropsychiatric spectrum disorders. © 2016 Wiley Periodicals, Inc.

摘要

在美国,1.1%-1.5%的儿童已被诊断患有自闭症谱系障碍(ASD),发病率和患病率相应增加了30%。社交和沟通障碍是ASD的主要体征和症状,目前可用的药物在减少这些核心缺陷方面效果不佳。观察性研究表明,ASD儿童在发热性疾病后往往表现出认知和行为改善,这与代谢途径的改变有关,导致细胞应激反应和热休克蛋白(Hsps)表达增加。萝卜硫素和羟基酪醇分别是十字花科蔬菜和特级初榨橄榄油中的植物化学物质,它们可在细胞应激反应中诱导与发热产生的代谢效应相似的代谢效应。因此,调节内源性细胞防御机制可能是ASD及其他与神经炎症和神经退行性变相关疾病治疗干预的一种创新方法。本综述介绍了 hormetic 剂量反应概念,并阐述了神经保护的可能机制和应用。我们探讨了Hsps在氧化还原应激反应机制的神经保护网络中的新兴作用,并提出了营养抗氧化剂萝卜硫素和羟基酪醇对ASD特定体征和症状的潜在治疗效用。我们认为,必须以务实和谨慎的态度对待此类研究结果。利用近期和正在进行的脑科学研究投资,并完善神经科学知识和能力,以更准确地诊断和安全、有效且符合伦理地治疗ASD及其他神经精神谱系障碍至关重要。© 2016威利期刊公司

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