Personalized monitoring of female hormones (for example, oestradiol) is of great interest in fertility and women's health. However, existing approaches usually require invasive blood draws and/or bulky analytical laboratory equipment, making them hard to implement at home. Here we report a skin-interfaced wearable aptamer nanobiosensor based on target-induced strand displacement for automatic and non-invasive monitoring of oestradiol via in situ sweat analysis. The reagentless, amplification-free and 'signal-on' detection approach coupled with a gold nanoparticle-MXene-based detection electrode offers extraordinary sensitivity with an ultra-low limit of detection of 0.14âpM. This fully integrated system is capable of autonomous sweat induction at rest via iontophoresis, precise microfluidic sweat sampling controlled via capillary bursting valves, real-time oestradiol analysis and calibration with simultaneously collected multivariate information (that is, temperature, pH and ionic strength), as well as signal processing and wireless communication with a user interface (for example, smartphone). We validated the technology in human participants. Our data indicate a cyclical fluctuation in sweat oestradiol during menstrual cycles, and a high correlation between sweat and blood oestradiol was identified. Our study opens up the potential for wearable sensors for non-invasive, personalized reproductive hormone monitoring.
A wearable aptamer nanobiosensor for non-invasive female hormone monitoring.
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作者:Ye Cui, Wang Minqiang, Min Jihong, Tay Roland Yingjie, Lukas Heather, Sempionatto Juliane R, Li Jiahong, Xu Changhao, Gao Wei
| 期刊: | Nature Nanotechnology | 影响因子: | 34.900 |
| 时间: | 2024 | 起止号: | 2024 Mar;19(3):330-337 |
| doi: | 10.1038/s41565-023-01513-0 | ||
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