首页> 外文期刊>ECS Journal of Solid State Science and Technology >Development of Low Cost Rapid Fabrication of Sharp Polymer Microneedles for In Vivo Glucose Biosensing Applications
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Development of Low Cost Rapid Fabrication of Sharp Polymer Microneedles for In Vivo Glucose Biosensing Applications

机译:低成本快速制备用于体内葡萄糖生物传感应用的锋利聚合物微针

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摘要

New approaches to enable more effective management of diabetes mellitus, such as continuous glucose monitoring are being developed both to prevent unstable episodes of hypo or hyper glycaemia and also to provide an improved user experience. One emerging approach to realize these requirements is to fabricate a minimally invasive transdermal sensor for the direct in vivo detection of glucose in the interstitial fluid. Microneedles - sharp, microscopic structures measuring less than 1 mm in length - have been previously employed to allow painless penetration of the stratum corneum for delivery of drugs and vaccines. In this work we present, ultra sharp gold coated polymer microneedle arrays (sub micron tip radii) which are fabricated using a low cost polymer replication approach. Critical dimensions of the microneedle arrays are characterized using a combination of optical and scanning electron microscopies. Fabricated microneedle devices are characterized by cyclic voltammetry to explore functionality. The voltammetric detection of glucose is performed using ferrocene monocarboxylic acid as an oxidising mediator in the presence of glucose oxidase. The biosensor can be applied to the quantification of glucose in the physiological range (2 - 13.5 mM). The sensors demonstrate high selectivity towards glucose with negligible interference from other oxidizable species including uric acid, ascorbic acid, mannose, fructose, salicylic acid (Aspirin) and acetaminophen (Paracetamol). This demonstrates potential future use of these microneedle devices for in vivo glucose detection.
机译:正在开发能够更有效地管理糖尿病的新方法,例如连续血糖监测,以防止低血糖或高血糖的不稳定发作,并提供更好的用户体验。实现这些要求的一种新兴方法是制造一种微创透皮传感器,用于直接体内检测组织液中的葡萄糖。微针-长度小于1毫米的尖锐的微观结构-以前已被用来使角质层无痛地穿透以输送药物和疫苗。在这项工作中,我们介绍了使用低成本聚合物复制方法制造的超尖金涂层聚合物微针阵列(亚微米尖端半径)。微针阵列的临界尺寸通过光学和扫描电子显微镜的组合来表征。人造微针设备的特征在于循环伏安法以探索功能。葡萄糖的伏安法检测是在葡萄糖氧化酶存在下,使用二茂铁一元羧酸作为氧化介质进行的。该生物传感器可应用于生理范围(2-13.5 mM)中的葡萄糖定量。传感器显示出对葡萄糖的高选择性,而不受其他可氧化物质(包括尿酸,抗坏血酸,甘露糖,果糖,水杨酸(阿司匹林)和对乙酰氨基酚(对乙酰氨基酚)的干扰)的影响。这证明了这些微针装置将来可能用于体内葡萄糖检测。

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