Noninvasive Real-Time Glucose Monitoring Is in the Near Future.

IF 5.7 2区 医学 Q1 ENDOCRINOLOGY & METABOLISM Diabetes technology & therapeutics Pub Date : 2024-09-01 Epub Date: 2024-05-17 DOI:10.1089/dia.2024.0009
Irl B Hirsch, Amir Tirosh, Ami Navon
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Abstract

Objective: Since the introduction of continuous glucose monitoring (CGM) technology, developers have rigorously researched the feasibility of creating a noninvasive glucose monitoring device. In a recent pilot study, investigators reported a strong correlation between glucose values obtained from novel noninvasive monitoring device (GWave) values to venous and capillary glucose measurements. Research Design and Methods: We investigated whether the level of accuracy observed in the pilot study could be reproduced in a larger cohort, using a smaller third-generation manufacturable device (Gen III GWave) containing a standardized sensor chip that can be mass produced for commercial use. The evaluation assessed concordance with capillary blood glucose, reproducibility between two Gen III devices, and accuracy during insulin-induced hypoglycemia. Results: Assessment of samples from 75 subjects (type 2 diabetes, n = 6; type 1 diabetes, n = 28; nondiabetic pregnant subjects, n = 10; and nondiabetic, n = 31) showed that 97% of values were in Zone A with 3% in Zone B of the Clarke Error Grid, with a mean absolute relative difference of 6.7% from reference blood glucose. Comparison between two independent Gen III GWave devices demonstrated reproducibility between the sensors (R2 = 0.95), with 100% of values within Zone A. In the hypoglycemia assessment, measurements from the Gen III sensor tightly followed the capillary glucose measurements down to 42 mg/dL (2.3 mmol/L), whereas the CGM measurements from two different CGM only converged with the GWave and capillary glucose readings after 90 min of decreasing glucose levels. Conclusion: Our results show promise as potentially the first noninvasive technology. Future studies will focus on larger number of people in all glucose ranges. Real-time noninvasive blood glucose monitoring is possible using GWave technology.

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无创、实时的葡萄糖监测技术即将问世。
目的:自连续葡萄糖监测技术问世以来,研发人员一直在严格研究制造无创葡萄糖监测设备的可行性。在最近的一项试点研究中,研究人员报告称,通过新型无创监测设备(GWave)获得的葡萄糖值与静脉和毛细血管葡萄糖测量值之间存在很强的相关性:我们调查了试点研究中观察到的准确度是否能在更大的群体中重现,使用的是更小的第三代可制造设备(第三代 GWave),该设备包含标准化传感器芯片,可批量生产用于商业用途。评估内容包括与毛细血管血糖的一致性、两个第三代设备之间的可重复性以及胰岛素诱发低血糖时的准确性:对 75 名受试者(T2D,6 人;T1D,28 人;非糖尿病妊娠受试者,10 人;非糖尿病,31 人)样本的评估显示,97% 的血糖值位于克拉克误差网格的 A 区,3% 位于 B 区,与参考血糖的平均绝对相对差值 (MARD) 为 6.7%。在低血糖评估中,Gen III 传感器的测量值紧跟毛细血管血糖测量值,直至 42 毫克/分升(2.3 毫摩尔/升),而两种不同 CGM 的测量值只有在血糖水平下降 90 分钟后才与 GWave 和毛细血管血糖读数趋于一致:我们的研究结果表明,该技术有望成为首个无创技术。未来的研究将重点关注所有血糖范围内的更多人群。使用 GWave 技术可以实现实时无创血糖监测。
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来源期刊
Diabetes technology & therapeutics
Diabetes technology & therapeutics 医学-内分泌学与代谢
CiteScore
10.60
自引率
14.80%
发文量
145
审稿时长
3-8 weeks
期刊介绍: Diabetes Technology & Therapeutics is the only peer-reviewed journal providing healthcare professionals with information on new devices, drugs, drug delivery systems, and software for managing patients with diabetes. This leading international journal delivers practical information and comprehensive coverage of cutting-edge technologies and therapeutics in the field, and each issue highlights new pharmacological and device developments to optimize patient care.
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