自愈水凝胶
材料科学
超声波
生物医学工程
数码产品
生物相容性材料
超声波传感器
共振(粒子物理)
体内
肿胀 的
纳米技术
声学
传感器
化学
复合材料
医学
物理
粒子物理学
生物
物理化学
生物技术
高分子化学
作者
Navid Farhoudi,Lars B. Laurentius,Jules J. Magda,Christopher F. Reiche,Florian Solzbacher
出处
期刊:ACS Sensors
[American Chemical Society]
日期:2021-09-20
卷期号:6 (10): 3587-3595
被引量:22
标识
DOI:10.1021/acssensors.1c00844
摘要
A novel glucose sensor is presented using smart hydrogels as biocompatible implantable sensing elements, which eliminates the need for implanted electronics and uses an external medical-grade ultrasound transducer for readout. The readout mechanism uses resonance absorption of ultrasound waves in glucose-sensitive hydrogels. In vivo glucose concentration changes in the interstitial fluid lead to swelling or deswelling of the gels, which changes the resonance behavior. The hydrogels are designed and shaped such as to exhibit specific mechanical resonance frequencies while remaining sonolucent to other frequencies. Thus, they allow conventional and continued ultrasound imaging, while yielding a sensing signal at specific frequencies that correlate with glucose concentration. The resonance frequencies can be tuned by changing the shape and mechanical properties of the gel structures, such as to allow for multiple, colocated implanted hydrogels with different sensing characteristics or targets to be employed and read out, without interference using the same ultrasound transducer, by simply toggling frequencies. The fact that there is no need for any implantable electronics, also opens up the path toward future use of biodegradable hydrogels, thus creating a platform that allows injection of sensors that do not need to be retrieved when they reach the end of their useful lifespan.
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