生物医学工程
门控
间质液
信号(编程语言)
角质层
干扰(通信)
血糖监测
化学
材料科学
糖尿病
计算机科学
医学
生物物理学
内科学
病理
生物
内分泌学
程序设计语言
频道(广播)
计算机网络
作者
Nasire Uluç,Sarah Glasl,Francesca Gasparin,Tao Yuan,Hailong He,Dominik Jüstel,Miguel A. Pleitez,Vasilis Ntziachristos
标识
DOI:10.1038/s42255-024-01016-9
摘要
Non-invasive glucose monitoring (NIGM) represents an attractive alternative to finger pricking for blood glucose assessment and management of diabetes. Nevertheless, current NIGM techniques do not measure glucose concentrations in blood but rely on indirect bulk measurement of glucose in interstitial fluid, where glucose is diluted and glucose dynamics are different from those in the blood, which impairs NIGM accuracy. Here we introduce a new biosensor, termed depth-gated mid-infrared optoacoustic sensor (DIROS), which allows, for the first time, non-invasive glucose detection in blood-rich volumes in the skin. DIROS minimizes interference caused by the stratum corneum and other superficial skin layers by time-gating mid-infrared optoacoustic signals to enable depth-selective localization of glucose readings in skin. In measurements on the ears of (female) mice, DIROS displays improved accuracy over bulk-tissue glucose measurements. Our work demonstrates how signal localization can improve NIGM accuracy and positions DIROS as a holistic approach, with high translational potential, that addresses a key limitation of current NIGM methods.
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