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Wearable Biosensors: An Alternative and Practical Approach in Healthcare and Disease Monitoring

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MOLECULES
卷 26, 期 3, 页码 -

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MDPI
DOI: 10.3390/molecules26030748

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wearable biosensor; healthcare monitoring; biomarkers; biological fluids; physiological conditions

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With the population growth, aging, and rise of chronic diseases, the healthcare system is shifting from hospital-centered to individual-centered. Wearable sensors play a crucial role in healthcare monitoring, enabling continuous measurement of biomarkers, diagnosis, and evaluation in biological fluids. These devices hold promise for timely diagnosis and treatment and require validation studies for clinical acceptance.
With the increasing prevalence of growing population, aging and chronic diseases continuously rising healthcare costs, the healthcare system is undergoing a vital transformation from the traditional hospital-centered system to an individual-centered system. Since the 20th century, wearable sensors are becoming widespread in healthcare and biomedical monitoring systems, empowering continuous measurement of critical biomarkers for monitoring of the diseased condition and health, medical diagnostics and evaluation in biological fluids like saliva, blood, and sweat. Over the past few decades, the developments have been focused on electrochemical and optical biosensors, along with advances with the non-invasive monitoring of biomarkers, bacteria and hormones, etc. Wearable devices have evolved gradually with a mix of multiplexed biosensing, microfluidic sampling and transport systems integrated with flexible materials and body attachments for improved wearability and simplicity. These wearables hold promise and are capable of a higher understanding of the correlations between analyte concentrations within the blood or non-invasive biofluids and feedback to the patient, which is significantly important in timely diagnosis, treatment, and control of medical conditions. However, cohort validation studies and performance evaluation of wearable biosensors are needed to underpin their clinical acceptance. In the present review, we discuss the importance, features, types of wearables, challenges and applications of wearable devices for biological fluids for the prevention of diseased conditions and real-time monitoring of human health. Herein, we summarize the various wearable devices that are developed for healthcare monitoring and their future potential has been discussed in detail.

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