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1.
Anal Bioanal Chem ; 416(6): 1407-1415, 2024 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-38246908

RESUMO

Wearable glucose biosensors enable noninvasive glucose monitoring, thereby enhancing blood glucose management. In this work, we present a wearable biosensor based on carbon black nanoparticles (CBNPs) for glucose detection in human sweat. The biosensor consists of CBNPs, Prussian blue (PB), glucose oxidase, chitosan, and Nafion. The fabricated biosensor has a linear range of 5 µM to 1250 µM, sensitivity of 14.64 µA mM-1 cm-2, and a low detection potential (-0.05 V, vs. Ag/AgCl). The detection limit for glucose was calculated as 4.83 µM. This reusable biosensor has good selectivity and stability and exhibits a good response to glucose in real sweat. These results demonstrate the potential of our CBNP-based biosensor for monitoring blood glucose in human sweat.


Assuntos
Técnicas Biossensoriais , Nanopartículas , Dispositivos Eletrônicos Vestíveis , Humanos , Suor , Fuligem , Glicemia , Automonitorização da Glicemia , Técnicas Biossensoriais/métodos , Glucose , Glucose Oxidase
2.
Anal Methods ; 12(20): 2560-2570, 2020 05 28.
Artigo em Inglês | MEDLINE | ID: mdl-32930282

RESUMO

Blood plasma separation is a vital sample pre-treatment procedure for microfluidic devices in blood diagnostics, and it requires reliability and speediness. In this work, we propose a novel and simple method for microvolume blood plasma separation driven by capillary force. Flat-shaped filter membranes combined with hydrophilic narrow capillaries are introduced into devices, in order to reduce the residual volumes of blood plasma. An interference fit is used to ensure no leakage of blood or cells. There is desired trapping efficiency of blood cells in the devices. The method provides high efficiency with a plasma extraction yield of 71.7% within 6 min, using 60 µL of undiluted whole human blood with 45% haematocrit. The influence from structural parameters on the separation kinetics and the dependence of the haematocrit levels on the separation efficiency are also investigated. The total protein detection shows considerable protein recovery of 82.3% in the extracted plasma. Thus, the plasma separation unit with a very simple structure is suitable for integrating into microfluidic devices, presenting promising prospects for clinical diagnostics as well as for point-of-care testing applications.


Assuntos
Técnicas Analíticas Microfluídicas , Capilares , Humanos , Dispositivos Lab-On-A-Chip , Plasma , Reprodutibilidade dos Testes
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