Skin-like biosensor system via electrochemical channels for noninvasive blood glucose monitoring

Science advances - Tập 3 Số 12 - 2017
Yihao Chen1, Siyuan Lu1, Shasha Zhang2, Yan Li1, Zhe Qu1, Ying Chen1, Bingwei Lu1, Xinyan Wang2, Xue Feng1
1AML, Department of Engineering Mechanics, Tsinghua University, Beijing 100084, China
2Special Diagnosis Department, People’s Liberation Army Air Force General Hospital, Beijing 100142, China.

Tóm tắt

Electrochemical twin channels make glucose in vessels measurable by noninvasive ultrathin skin-like highly sensitive biosensors.

Từ khóa


Tài liệu tham khảo

10.1126/science.1104343

10.1126/scitranslmed.3001148

10.1016/j.aca.2012.03.043

A. Tura, A. Maran, G. Pacini, Non-invasive glucose monitoring: Assessment of technologies and devices according to quantitative criteria. Diabetes Res. Clin. Pract. 77, 16–40 (2007).

A. J. Bandodkar, W. Jia, J. Wang, Tattoo-based wearable electrochemical devices: A review. Electroanalysis 27, 562–572 (2015).

M. G. Ghosn, N. Sudheendran, M. Wendt, A. Glasser, V. V. Tuchin, J. V. Larin, Monitoring of glucose permeability in monkey skin in vivo using optical coherence tomography. J. Biophotonics 3, 25–33 (2010).

K. V. Larin, M. S. Eledrisi, M. Motamedi, R. O. Esenaliev, Noninvasive blood glucose monitoring with optical coherence tomography: A pilot study in human subjects. Diabetes Care 25, 2263–2267 (2002).

10.1073/pnas.1006911107

O. K. Cho, Y. O. Kim, H. Mitsumaki, K. Kuwa, Noninvasive measurement of glucose by metabolic heat conformation method. Clin. Chem. 50, 1894–1898 (2004).

X. Yang, A. Y. Zhang, D. A. Wheeler, T. C. Bond, C. Gu, Y. Li, Direct molecule-specific glucose detection by Raman spectroscopy based on photonic crystal fiber. Anal. Bioanal. Chem. 402, 687–691 (2012).

R. K. Shervedani, A. H. Mehrjardi, N. Zamiri, A novel method for glucose determination based on electrochemical impedance spectroscopy using glucose oxidase self-assembled biosensor. Bioelectrochemistry 69, 201–208 (2006).

10.1038/nature16521

A. Soni, S. K. Jha, A paper strip based non-invasive glucose biosensor for salivary analysis. Biosens. Bioelectron. 67, 763–768 (2015).

S. Iguchi, H. Kudo, T. Saito, M. Ogawa, H. Saito, K. Otsuka, A. Funakubo, K. Mitsubayashi, A flexible and wearable biosensor for tear glucose measurement. Biomed. Microdevices 9, 603–609 (2007).

10.1038/nnano.2016.38

10.1002/elan.201600018

10.1126/scitranslmed.aaf2593

10.1126/sciadv.1601314

10.1038/73213

M. Pleitez, H. von Lilienfeld-Toal, W. Mäntele, Infrared spectroscopic analysis of human interstitial fluid in vitro and in vivo using FT-IR spectroscopy and pulsed quantum cascade lasers (QCL): Establishing a new approach to non invasive glucose measurement. Spectrochim. Acta A Mol. Biomol. Spectrosc. 85, 61–65 (2012).

10.1021/ac504300n

G. Rao, R. H. Guy, P. Glikfeld, W. R. LaCourse, L. Leung, J. Tamada, R. O. Potts, N. Azimi, Reverse iontophoresis: Noninvasive glucose monitoring in vivo in humans. Pharm. Res. 12, 1869–1873 (1995).

A. Sieg, R. H. Guy, M. B. Delgado-Charro, Simultaneous extraction of urea and glucose by reverse iontophoresis in vivo. Pharm. Res. 21, 1805–1810 (2004).

T. S. Ching, P. Connolly, Simultaneous transdermal extraction of glucose and lactate from human subjects by reverse iontophoresis. Int. J. Nanomedicine 3, 211–223 (2008).

10.1088/0967-3334/25/3/R01

Y. Chen, B. Lu, Y. Chen, X. Feng, Biocompatible and ultra-flexible inorganic strain sensors attached to skin for long-term vital signs monitoring. IEEE Electron. Device Lett. 37, 496–499 (2016).

10.1021/la701555n

H. Chen, X. Feng, Y. Huang, Y. Huang, J. A. Rogers, Experiments and viscoelastic analysis of peel test with patterned strips for applications to transfer printing. J. Mech. Phys. Solids 61, 1737–1752 (2013).

Y. Chen, B. Lu, Y. Chen, X. Feng, Breathable and stretchable temperature sensors inspired by skin. Sci. Rep. 5, 11505 (2015).

10.1002/adma.201301921