Wearable analytical devices represent the future for fast, de-centralized, and human-centered health monitoring. Electrochemistry-based platforms have been highlighted as the role model for future developments amid diverse strategies and transduction technologies. Among the various relevant analytes to be real-time and non-invasively monitored in bodily fluids, we review the latest wearable achievements towards determining essential and toxic metals. On-skin measurements represent an excellent possibility for humankind: real-time monitoring, digital/fast communication with specialists, quick interventions, removing barriers in developing countries. In this review, we discuss the achievements over the last 5 years in non-invasive electrochemical platforms, providing a comprehensive table for quick visualizing the diverse sensing/technological advances. In the final section, challenges and future perspectives about wearables are deeply discussed.

Non-invasive electrochemistry-driven metals tracing in human biofluids / Faheem, A.; Cinti, S.. - In: BIOSENSORS & BIOELECTRONICS. - ISSN 0956-5663. - 200:(2022), p. 113904. [10.1016/j.bios.2021.113904]

Non-invasive electrochemistry-driven metals tracing in human biofluids

Cinti S.
2022

Abstract

Wearable analytical devices represent the future for fast, de-centralized, and human-centered health monitoring. Electrochemistry-based platforms have been highlighted as the role model for future developments amid diverse strategies and transduction technologies. Among the various relevant analytes to be real-time and non-invasively monitored in bodily fluids, we review the latest wearable achievements towards determining essential and toxic metals. On-skin measurements represent an excellent possibility for humankind: real-time monitoring, digital/fast communication with specialists, quick interventions, removing barriers in developing countries. In this review, we discuss the achievements over the last 5 years in non-invasive electrochemical platforms, providing a comprehensive table for quick visualizing the diverse sensing/technological advances. In the final section, challenges and future perspectives about wearables are deeply discussed.
2022
Non-invasive electrochemistry-driven metals tracing in human biofluids / Faheem, A.; Cinti, S.. - In: BIOSENSORS & BIOELECTRONICS. - ISSN 0956-5663. - 200:(2022), p. 113904. [10.1016/j.bios.2021.113904]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/879875
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