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Biosens Bioelectron ; 101: 227-234, 2018 Mar 15.
Article in English | MEDLINE | ID: mdl-29096360

ABSTRACT

Flexible epidermal tattoo and textile-based electrochemical biosensors have been developed for vapor-phase detection of organophosphorus (OP) nerve agents. These new wearable sensors, based on stretchable organophosphorus hydrolase (OPH) enzyme electrodes, are coupled with a fully integrated conformal flexible electronic interface that offers rapid and selective square-wave voltammetric detection of OP vapor threats and wireless data transmission to a mobile device. The epidermal tattoo and textile sensors display a good reproducibility (with RSD of 2.5% and 4.2%, respectively), along with good discrimination against potential interferences and linearity over the 90-300mg/L range, with a sensitivity of 10.7µA∙cm3∙mg-1 (R2 = 0.983) and detection limit of 12mg/L in terms of OP air density. Stress-enduring inks, used for printing the electrode transducers, ensure resilience against mechanical deformations associated with textile and skin-based on-body sensing operations. Theoretical simulations are used to estimate the OP air density over the sensor surface. These fully integrated wearable wireless tattoo and textile-based nerve-agent vapor biosensor systems offer considerable promise for rapid warning regarding personal exposure to OP nerve-agent vapors in variety of decentralized security applications.


Subject(s)
Air/analysis , Biosensing Techniques/instrumentation , Nerve Agents/analysis , Organophosphorus Compounds/analysis , Wearable Electronic Devices , Wireless Technology/instrumentation , Aryldialkylphosphatase/chemistry , Electrodes , Equipment Design , Humans , Limit of Detection , Reproducibility of Results , Textiles , Volatilization
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