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首页> 外文期刊>Biochemical and Biophysical Research Communications >Mid infrared light treatment attenuates cognitive decline and alters the gut microbiota community in APP/PS1 mouse model
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Mid infrared light treatment attenuates cognitive decline and alters the gut microbiota community in APP/PS1 mouse model

机译:中红外光途衰减衰减认知下降并改变APP / PS1小鼠模型中的肠道微生物群落

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摘要

Alzheimer's disease (AD) as the first most neurodegenerative disease in the elderly still has no effective therapy, suggesting that the intervention toolbox for AD should be expanded. One newly developed strategy involves the use of photobiomodulation, such as near infrared or far infrared light, which has proven to attenuate AD-associated pathology. However, the efficacy of mid infrared light (MIR) in treating AD is under investigated. With this in mind, we assessed the benefits of MIR light of peak wavelength 7.7-10 mu m treatment on APP/PS1 transgenic mice. We found that APP/PS1 mice treated with MIR light had improved learning and memory abilities and reduced amyloid-beta (A beta) plaque load in the brain. We also surprisingly found that the gut microbiota composition in APP/PS1 mice treated with MIR light returned to normal (wild type mice) levels. Together, these findings suggested a novel non-invasive and promising avenue for AD treatment via photobiomodulation, and also proposed that future target for AD might be the gut microbiota via the brain-gut-skin axis. (C) 2019 Elsevier Inc. All rights reserved.
机译:阿尔茨海默病(AD)作为老年人的第一个最神经退行性疾病仍然没有有效的治疗,这表明广告的干预工具箱应该扩大。一种新开发的策略涉及使用光生物调节,例如近红外线或远红外光,这已经证明已经证明可以衰减了涉及的广告病理学。然而,正在研究中红外光(MIR)治疗广告的疗效。考虑到这一点,我们评估了在APP / PS1转基因小鼠上治疗的峰值波长7.7-10μm的miR光的益处。我们发现,用miR光处理的APP / PS1小鼠具有改善的学习和记忆能力,并且在大脑中降低了淀粉样蛋白β(β)斑块载荷。我们还令人惊讶地发现,用MIR光处理的APP / PS1小鼠中的肠道微生物群组成返回正常(野生型小鼠)水平。这些研究结果在一起建议通过光生物调节提出一种新的非侵入性和有希望的AD治疗途径,并提出了通过脑肠道皮轴的未来AD的目标可能是肠道微生物轴。 (c)2019 Elsevier Inc.保留所有权利。

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