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Development and evaluation of a novel microprobe array continuous glucose monitor for type 1 diabetes

机译:一种新型微探针阵列连续血糖监测仪治疗1型糖尿病的研究与评价

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摘要

Despite the evidence demonstrating benefits of continuous glucose monitoring (CGM), the technology has not been widely implemented in routine management of type 1 diabetes due to several challenges. Our group has developed a novel sensor for CGM based on microprobe technology. The sensor consists of an array of solid microprobes, which are functionalised for in situ electrochemical measurement of dermal interstitial fluid glucose. The unique minimally-invasive non-extractive approach provides several avenues to enhance CGM accuracy.udIn this thesis, I describe the work carried out aiming to transfer this novel technology from bench side to bedside.udTo evaluate sensor’s ability to penetrate stratum corneum, human skin was utilised ex vivo to assess the force required for microprobes’ insertion compared to that required for their fracture. These studies guided a change in the fabrication technique and a modification in microprobes’ design.udIn vitro studies showed high sensitivity to glucose, providing the potential to enhance sensor accuracy. Further evaluation showed that neither skin insertion nor gamma ray sterilisation had impacted sensor performance.udClinical evaluation of sensor safety and proof of concept started with phase 1. The six-hour study demonstrated that sensor use was associated with barely noticeable skin reaction and minimal pain.udThe work also includes a mixed-method study aimed at capturing patients’ views in relation to CGM and describes the role of patient and public involvement in this project.udThese findings have important implications for the development of an accurate, cost-effective and user-friendly CGM system. This may help in widespread implementation of CGM technology and enhance compliance with CGM use with subsequent improvement in clinical effectiveness.udFinally, a re-analysis of 448 glucose profiles from the Juvenile Diabetes Research Foundation CGM study is presented. This describes measures of glycaemic variability in type 1 diabetes and demonstrates the value of CGM in reducing these measures.
机译:尽管有证据表明连续血糖监测(CGM)的好处,但由于一些挑战,该技术尚未在1型糖尿病的常规治疗中广泛应用。我们的小组基于微探针技术开发了一种用于CGM的新型传感器。该传感器由一系列固态微探针组成,这些探针经功能化可用于真皮间质液葡萄糖的原位电化学测量。独特的微创非提取方法为提高CGM准确性提供了几种途径。 ud在本文中,我描述了旨在将这项新技术从实验台侧转移到床侧的工作。 ud为了评估传感器穿透角质层的能力,人体皮肤被用于离体,以评估微探针插入所需的力与骨折所需的力。这些研究指导了制造技术的改变和微探针设计的修改。 ud体外研究表明,它对葡萄糖具有很高的敏感性,具有增强传感器准确性的潜力。进一步的评估表明,皮肤插入和伽马射线灭菌都不会影响传感器的性能。 ud对传感器安全性和概念验证的临床评估始于第一阶段。六小时的研究表明,传感器的使用与几乎没有明显的皮肤反应和最小的疼痛有关。 ud这项工作还包括一项混合方法研究,旨在了解患者对CGM的看法,并描述患者和公众参与该项目的作用。 ud这些发现对于开发准确,具有成本效益的产品具有重要意义。和用户友好的CGM系统。这可能有助于广泛应用CGM技术并增强对CGM使用的依从性,从而改善临床有效性。 ud最后,本文对青少年糖尿病研究基金会CGM研究的448个葡萄糖谱进行了重新分析。这描述了1型糖尿病患者血糖变异性的度量,并证明了CGM在减少这些度量中的价值。

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    El-Laboudi Ahmed Hussein;

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  • 年度 2015
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