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首页> 外文期刊>Free Radical Biology and Medicine: The Official Journal of the Oxygen Society >Non-invasive evaluation of atopic dermatitis based on redox status using in vivo dynamic nuclear polarization magnetic resonance imaging
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Non-invasive evaluation of atopic dermatitis based on redox status using in vivo dynamic nuclear polarization magnetic resonance imaging

机译:基于氧化还原状态的基于氧化还原状态使用体内动态核极化磁共振成像非侵入性评价

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摘要

Atopic dermatitis (AD) is a chronic inflammatory condition with complex etiology, including genetic, environmental and immunologic factors. Redox imbalance caused by excessive oxidative stress has been shown to mediate disease activity of AD. Currently, an imaging technique that can monitor the redox status of the skin in vivo has not yet been developed. Consequently, we have established such a technique that can detect and visualize the redox status of the skin using in vivo dynamic nuclear polarization magnetic resonance imaging (DNP-MRI). To evaluate this technique, we utilized an AD mouse model that was generated by repeated topical application of mite antigen in NC/Nga mice. We imaged alterations in redox balance of the resulting AD skin lesions of the mice. Using in vivo DNP-MRI and non-toxic nitroxyl radicals to visualize free radicals in vivo, we revealed that AD skin lesions demonstrated more rapid decay rates of image intensity enhancement than normal skin, indicating that our technique can monitor excessive oxidative stress occurring in AD skin lesions. Therefore, this technique has the potential to provide a novel approach for evaluating disease activity of inflammatory skin diseases, including AD, from the view point of altered redox status.
机译:特应性皮炎(AD)是一种慢性炎症病症,具有复杂的病因,包括遗传,环境和免疫因素。已经显示出过度氧化胁迫引起的氧化还原不平衡介导广告的疾病活性。目前,尚未开发一种可以监测皮肤氧化还原状态的成像技术。因此,我们已经建立了使用体内动态核偏振磁共振成像(DNP-MRI)来检测和可视化皮肤的氧化还原状态的这种技术。为了评估该技术,我们利用了通过在NC / NGA小鼠中重复局部施用螨抗原的AD小鼠模型。我们在鼠标的所产生的AD皮肤病变的氧化还原平衡中进行了成像。使用体内DNP-MRI和无毒的硝基根基团以可视化体内自由基,我们透露,广告皮肤病变比正常皮肤更快速地衰减的图像强度增强率,表明我们的技术可以监测广告中发生的过度氧化应激皮损。因此,该技术具有潜力可以提供一种新的方法,用于评估炎症性皮肤病(包括AD)的疾病活动,从改变的氧化还原状态的观点来看。

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