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一种可穿戴的微针贴片,结合了基于可逆 FRET 的水凝胶传感器,用于连续葡萄糖监测。

A wearable microneedle patch incorporating reversible FRET-based hydrogel sensors for continuous glucose monitoring.

机构信息

Department of Chemical Engineering, Imperial College London, London, SW7 2AZ, United Kingdom.

Department of Chemical Engineering, Imperial College London, London, SW7 2AZ, United Kingdom.

出版信息

Biosens Bioelectron. 2024 Oct 15;262:116542. doi: 10.1016/j.bios.2024.116542. Epub 2024 Jun 27.

DOI:10.1016/j.bios.2024.116542
PMID:38991372
Abstract

Continuous glucose monitors are crucial for diabetes management, but invasive sampling, signal drift and frequent calibrations restrict their widespread usage. Microneedle sensors are emerging as a minimally-invasive platform for real-time monitoring of clinical parameters in interstitial fluid. Herein, a painless and flexible microneedle sensing patch is constructed by a mechanically-strong microneedle base and a thin layer of fluorescent hydrogel sensor for on-site, accurate, and continuous glucose monitoring. The Förster resonance energy transfer (FRET)-based hydrogel sensors are fabricated by facile photopolymerizations of acryloylated FRET pairs and glucose-specific phenylboronic acid. The optimized hydrogel sensor enables quantification of glucose with reversibility, high selectivity, and signal stability against photobleaching. Poly (ethylene glycol diacrylate)-co-polyacrylamide hydrogel is utilized as the microneedle base, facilitating effective skin piercing and biofluid extraction. The integrated microneedle sensor patch displays a sensitivity of 0.029 mM in the (patho)physiological range, a low detection limit of 0.193 mM, and a response time of 7.7 min in human serum. Hypoglycemia, euglycemia and hyperglycemia are continuously monitored over 6 h simulated meal and rest activities in a porcine skin model. This microneedle sensor with high transdermal analytical performance offers a powerful tool for continuous diabetes monitoring at point-of-care settings.

摘要

连续血糖监测仪对糖尿病管理至关重要,但由于侵入性采样、信号漂移和频繁校准,限制了其广泛应用。微针传感器作为一种微创平台,可实时监测间质液中的临床参数。在此,通过机械强度高的微针基底和薄的荧光水凝胶传感器层,构建了一种无痛、灵活的微针传感贴,用于现场、准确、连续的血糖监测。基于Förster 共振能量转移(FRET)的水凝胶传感器是通过简单的光聚合丙烯酰化 FRET 对和葡萄糖特异性苯硼酸制备的。优化后的水凝胶传感器能够定量检测葡萄糖,具有可逆性、高选择性和信号稳定性,对光漂白具有抗性。聚(乙二醇二丙烯酸酯)-共-聚丙烯酰胺水凝胶用作微针基底,有助于有效穿刺皮肤和提取生物流体。集成的微针传感器贴片在模拟餐食和休息活动的猪皮模型中,在(病理)生理范围内的灵敏度为 0.029 mM,检测限低至 0.193 mM,响应时间为 7.7 分钟。在猪皮模型中,经过 6 小时的模拟进餐和休息活动,持续监测低血糖、正常血糖和高血糖。这种具有高透皮分析性能的微针传感器为在即时护理环境下进行连续糖尿病监测提供了有力工具。

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