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用于静息状态下尿酸精确分析的铁单原子纳米酶修饰可穿戴水凝胶贴片

Fe Single-Atom Nanozyme-Modified Wearable Hydrogel Patch for Precise Analysis of Uric Acid at Rest.

作者信息

Zhang Yong, Hou Changjun, Zhao Peng, Zeng Xin, Liu Yiyi, Chen Jian, Gao Yifan, Wang Cuncun, Hou Jingzhou, Huo Danqun

机构信息

Key Laboratory for Biorheological Science and Technology of Ministry of Education, Bioengineering College of Chongqing University, Chongqing 400044, PR China.

Chongqing University Three Gorges Hospital, Chongqing 404000, PR China.

出版信息

ACS Appl Mater Interfaces. 2023 Sep 20;15(37):43541-43549. doi: 10.1021/acsami.3c08978. Epub 2023 Sep 11.

Abstract

Resting sweat analysis could provide unique insight into the metabolic levels of physiological and pathological states. However, the low secretion rate of resting sweat and the low concentration of metabolic molecules pose challenges for the development of noninvasive wearable sensors. Here, we demonstrated a wearable patch for the precise analysis of uric acid at rest. Fe single-atom nanozymes (FeSAs) with excellent electrocatalytic activity were used to develop a sensor for selective catalysis of uric acid (UA, 1-425 μM), and the catalytic mechanism of UA was later explored by density functional theory. In addition, polyaniline was integrated into the wearable patch for pH detection; thus, accurate analysis of sweat UA molecules can be achieved by pH calibration. Then, we explored the possibility of collecting resting sweat with different ratios of agarose hydrogels to reduce the sweat accumulation time. Finally, the possibility of a wearable patch for accurate UA detection in volunteer sweat samples was experimentally verified. We believe that our work provides novel insights and ideas for the analysis of resting sweat using wearable devices, further driving advancements in the field of personalized medicine.

摘要

静息汗液分析可为生理和病理状态的代谢水平提供独特见解。然而,静息汗液的低分泌率和代谢分子的低浓度对无创可穿戴传感器的开发构成挑战。在此,我们展示了一种用于精确分析静息状态下尿酸的可穿戴贴片。具有优异电催化活性的铁单原子纳米酶(FeSAs)被用于开发一种选择性催化尿酸(UA,1 - 425 μM)的传感器,随后通过密度泛函理论探索了UA的催化机制。此外,聚苯胺被集成到可穿戴贴片中用于pH检测;因此,通过pH校准可以实现对汗液中尿酸分子的准确分析。然后,我们探索了使用不同比例琼脂糖水凝胶收集静息汗液以减少汗液积聚时间的可能性。最后,通过实验验证了可穿戴贴片在志愿者汗液样本中准确检测尿酸的可能性。我们相信,我们的工作为使用可穿戴设备分析静息汗液提供了新颖的见解和思路,进一步推动了个性化医学领域的发展。

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