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基于柔性混合电子技术的口腔化学物质连续定量分析用于临床诊断和发病机制研究

Continuously Quantifying Oral Chemicals Based on Flexible Hybrid Electronics for Clinical Diagnosis and Pathogenetic Study.

作者信息

Ling Wei, Wang Yinghui, Lu Bingyu, Shang Xue, Wu Ziyue, Chen Zhaorun, Li Xueting, Zou Chenchen, Yan Jinjie, Zhou Yunjie, Liu Jie, Li Hongjie, Que Kehua, Huang Xian

机构信息

Department of Biomedical Engineering, Tianjin University, 92 Weijin Road, Tianjin 300072, China.

Center of Flexible Wearable Technology, Institute of Flexible Electronic Technology of Tsinghua, Jiaxing 314006, China.

出版信息

Research (Wash D C). 2022 Aug 16;2022:9810129. doi: 10.34133/2022/9810129. eCollection 2022.

Abstract

Simultaneous monitoring of diverse salivary parameters can reveal underlying mechanisms of intraoral biological processes and offer profound insights into the evolution of oral diseases. However, conventional analytical devices with bulky volumes, rigid formats, and discrete sensing mechanisms deviate from the requirements of continuous biophysiological quantification, resulting in huge difficulty in precise clinical diagnosis and pathogenetic study. Here, we present a flexible hybrid electronic system integrated with functional nanomaterials to continuously sense Ca, pH, and temperature for wireless real-time oral health monitoring. The miniaturized system with an island-bridge structure that is designed specifically to fit the teeth is only 0.4 g in weight and 31.5 × 8.5 × 1.35 mm in dimension, allowing effective integration with customized dental braces and comfort attachment on teeth. Characterization results indicate high sensitivities of 30.3 and 60.6 mV/decade for Ca and pH with low potential drifts. The system has been applied in clinical studies to conduct Ca and pH mappings on carious teeth, biophysiological monitoring for up to 12 h, and outcome evaluation of dental restoration, providing quantitative data to assist in the diagnosis and understanding of oral diseases. Notably, caries risk assessment of 10 human subjects using the flexible system validates the important role of saliva buffering capacity in caries pathogenesis. The proposed flexible system may offer an open platform to carry diverse components to support both clinical diagnosis and treatment as well as fundamental research for oral diseases and induced systemic diseases.

摘要

同时监测多种唾液参数可以揭示口腔内生物过程的潜在机制,并为口腔疾病的演变提供深刻见解。然而,传统分析设备体积庞大、形式固定且传感机制分散,不符合连续生物生理量化的要求,导致精确临床诊断和发病机制研究面临巨大困难。在此,我们展示了一种集成功能纳米材料的柔性混合电子系统,用于连续传感钙、pH值和温度,以实现无线实时口腔健康监测。该小型化系统采用专门设计以贴合牙齿的岛桥结构,重量仅0.4克,尺寸为31.5×8.5×1.35毫米,能够与定制牙托有效集成,并舒适地附着在牙齿上。表征结果表明,钙和pH值的灵敏度分别高达30.3和60.6 mV/十倍,且电位漂移较低。该系统已应用于临床研究,对龋齿进行钙和pH值映射、长达12小时的生物生理监测以及牙齿修复效果评估,提供定量数据以辅助口腔疾病的诊断和理解。值得注意的是,使用该柔性系统对10名人类受试者进行的龋齿风险评估验证了唾液缓冲能力在龋齿发病机制中的重要作用。所提出的柔性系统可能提供一个开放平台,用于搭载多种组件,以支持口腔疾病及诱发的全身性疾病的临床诊断和治疗以及基础研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b061/9414179/37c563663c0d/RESEARCH2022-9810129.001.jpg

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