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一种与牙种植体固定装置及其修复基台集成的长期连续生物传感器平台的新颖方案及评估

A Novel Scheme and Evaluations on a Long-Term and Continuous Biosensor Platform Integrated with a Dental Implant Fixture and Its Prosthetic Abutment.

作者信息

Li Yu-Jung, Lu Chih-Cheng

机构信息

Graduate Institute of Mechanical and Electrical Engineering, National Taipei University of Technology, Taipei 10608, Taiwan.

Department of Mechanical Engineering, National Taipei University of Technology, Taipei 10608, Taiwan.

出版信息

Sensors (Basel). 2015 Sep 25;15(10):24961-76. doi: 10.3390/s151024961.

Abstract

A miniature intra-oral dental implant system including a built-in biosensor device is proposed in this article. The dental implant system, or platform, is replaced over maxilla and allows relatively non-invasive procedures for a novel biosensing scheme for human blood analysis. Due to placement of the implant fixture, periodontal ligaments and the pulp structure, which are regarded as the main origin of pain, are thus removed, and long-term, continuous blood analysis and management through maxillary bone marrow becomes achievable through the dental implant platform. The new pathway of biological sensing is for the first time presented to realize an accurate and painless approach without injections. The dental implant system mainly consists of an implant fixture and a prosthetic abutment, a biosensor module, a bluetooth 4.0 wireless module and a dc button cell battery. The electrochemical biosensor possesses three electrodes, including working, reference and counter ones, which are arranged to pass through the titanium implant fixture below the biosensor module. The electrodes are exposed to the blood pool inside the maxillary bone marrow and perform oxidation/reduction reactions with the coating of biosensing enzyme. To prove the proposed platform, the immobilization process of glucose oxidase (GOD) enzyme and in vitro detections of glucose levels are successfully carried out, and proven sensitivity, linearity and repeatability of the glucose biosensor system are obtained. Moreover, a preliminary canine animal model adopting the new pathway shows significant consistency with the traditional method through dermal pricks for blood sugar detection. Despite the prospective results, further challenges in engineering implementation and clinical practices are addressed and discussed. In brief, the novel biosensing pathway and intra-oral biosensor platform may increasingly reveal their promising value and feasibilities in current bio-medical analysis, diagnosis, drug release and even healthcare technologies.

摘要

本文提出了一种包含内置生物传感器装置的微型口腔内牙种植系统。该牙种植系统或平台置于上颌骨上方,为一种用于人体血液分析的新型生物传感方案提供了相对无创的操作方式。由于种植体固定装置的放置,被视为疼痛主要来源的牙周韧带和牙髓结构被移除,通过牙种植平台对上颌骨髓进行长期、连续的血液分析和管理成为可能。首次提出了生物传感的新途径,以实现一种无需注射的准确且无痛的方法。牙种植系统主要由种植体固定装置、修复基台、生物传感器模块、蓝牙4.0无线模块和直流纽扣电池组成。电化学生物传感器拥有三个电极,包括工作电极、参比电极和对电极,它们设置为穿过生物传感器模块下方的钛种植体固定装置。电极暴露于上颌骨髓内的血池,并与生物传感酶涂层发生氧化/还原反应。为了验证所提出的平台,成功进行了葡萄糖氧化酶(GOD)的固定过程以及葡萄糖水平的体外检测,并获得了葡萄糖生物传感器系统经证实的灵敏度、线性度和重复性。此外,采用新途径的初步犬类动物模型与传统的皮肤针刺血糖检测方法显示出显著的一致性。尽管取得了预期结果,但仍对工程实施和临床实践中的进一步挑战进行了探讨。简而言之,这种新型生物传感途径和口腔内生物传感器平台可能会在当前的生物医学分析、诊断、药物释放乃至医疗保健技术中越来越多地展现出其有前景的价值和可行性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2d5/4634461/eb5ec0fdf090/sensors-15-24961-g001.jpg

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