Wearable electrochemical biosensors for sweat analysis present a promising means for noninvasive biomarker monitoring. However, sweat-based sensing still poses several challenges, including easy degradation of enzymes and biomaterials with repeated testing, limited detection range and sensitivity of enzyme-based biosensors caused by oxygen deficiency in sweat, and poor shelf life of sensors using all-in-one working electrodes patterned by traditional techniques (e.g., electrodeposition and screen printing). Herein, a stretchable, wearable, and modular multifunctional biosensor is developed, incorporating a novel MXene/Prussian blue (Ti C T /PB) composite designed for durable and sensitive detection of biomarkers (e.g., glucose and lactate) in sweat. A unique modular design enables a simple exchange of the specific sensing electrode to target the desired analytes. Furthermore, an implemented solid-liquid-air three-phase interface design leads to superior sensor performance and stability. Typical electrochemical sensitivities of 35.3 µA mm cm for glucose and 11.4 µA mm cm for lactate are achieved using artificial sweat. During in vitro perspiration monitoring of human subjects, the physiochemistry signals (glucose and lactate level) can be measured simultaneously with high sensitivity and good repeatability. This approach represents an important step toward the realization of ultrasensitive enzymatic wearable biosensors for personalized health monitoring.

Download full-text PDF

Source
http://dx.doi.org/10.1002/smll.201901190DOI Listing

Publication Analysis

Top Keywords

vitro perspiration
8
glucose lactate
8
mxene-based wearable
4
wearable biosensor
4
biosensor system
4
system high-performance
4
high-performance vitro
4
perspiration analysis
4
analysis wearable
4
wearable electrochemical
4

Similar Publications

Treatment effects of elexacaftor/tezacaftor/ivacaftor on people with cystic fibrosis heterozygous for 3849+10kbC->T and a class I variant.

J Cyst Fibros

December 2024

Pulmonology Institute and Adult CF Center, Rabin Medical Center, Petach Tikva, Israel; School of Medicine, Faculty of Medical and Health Sciences, Tel Aviv University, Tel Aviv, Israel.

Background: The splice variant 3849+10kbC->T (c.3717+12191C>T) (3849 variant) is a residual function CFTR variant, characterized by insertion of an in-frame stop codon into most CFTR transcripts. Both ivacaftor (Iva) and tezacaftor/ivacaftor (Tez/Iva) have been approved for people with CF (pwCF) carrying the 3849 variant.

View Article and Find Full Text PDF

The loss of keratin 77 in murine skin is functionally compensated by keratin 1.

Biochim Biophys Acta Mol Cell Res

November 2024

Institute of in vivo and in vitro Models, Department of Biological Sciences and Pathobiology, University of Veterinary Medicine Vienna, Veterinärplatz 1, 1210 Vienna, Austria. Electronic address:

Keratins, the intermediate filament-forming proteins of the epithelial cells, are mainly expressed in keratinocytes, preserving the structural integrity and cohesion of the epidermis. There are multiple inherited skin conditions arising from mutations in the encoding genes of specific keratins, highlighting their significance in skin health. Furthermore, the aberrant expression of keratins is evidenced in certain skin diseases, such as psoriasis, atopic dermatitis, and skin cancer.

View Article and Find Full Text PDF

The skin, as the body's largest organ, is vital for protecting against environmental stressors, regulating temperature, and preventing water loss. Here, we examined the potential of a mixture of five traditional Korean herbal extracts-, , , , and -referred to as herbal medicine composite 5 (HRMC5) for enhancing skin health and managing menopausal symptoms. High-performance liquid chromatography identified 14 bioactive compounds, including flavonoids, phenolic acids, anthraquinones, and alkaloids.

View Article and Find Full Text PDF

Restoring sweat gland function in mice using regenerative sweat gland cells derived from chemically reprogrammed human epidermal keratinocytes.

Sci Bull (Beijing)

December 2024

Research Center for Tissue Repair and Regeneration Affiliated to the Medical Innovation Research Department, PLA General Hospital and PLA Medical College, State Key Laboratory of Trauma and Chemical Poisoning, PLA Key Laboratory of Tissue Repair and Regenerative Medicine and Beijing Key Research Laboratory of Skin Injury, Repair and Regeneration, Research Unit of Trauma Care, Tissue Repair and Regeneration, Chinese Academy of Medical Sciences, 2019RU051, Beijing 100048, China. Electronic address:

The regeneration of sweat glands (SwGs) plays a pivotal role in the functional recovery of extensive skin wounds. Recent research has illuminated the possibility of reprogramming human epidermal keratinocytes (HEKs) into induced SwG cells through the ectopic expression of ectodysplasin A. However, the clinical application of this genetic manipulation approach is inherently limited.

View Article and Find Full Text PDF

Bioinspired skin-like in vitro model for investigating catheter-related bloodstream infections.

Sci Rep

October 2024

Center for Remote Health Technologies and Systems, Texas A&M Engineering Experiment Station, College Station, TX, 77843, USA.

Intravenous (IV) catheter-related bloodstream infections (CRBSIs) cause significant risks in healthcare, necessitating advancements in catheter design and materials. This study investigates the effectiveness of Ecoflex, a silicone-based material, in studying CRBSIs through the development of skin-like replicas that mimic human skin properties for use in wearable sensing devices. We characterized the replica's bioinspired surface roughness, wettability, bacterial adhesion, and mechanical properties and validated its performance using in vitro IV simulation.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!