Smart Skin‐Adhesive Patches: From Design to Biomedical Applications

Author:

Wong Siu Hong Dexter1ORCID,Deen G. Roshan2ORCID,Bates Jeffrey S.3ORCID,Maiti Chiranjit4ORCID,Lam Ching Ying Katherine1ORCID,Pachauri Abhishek3ORCID,AlAnsari Renad2ORCID,Bělský Petr5ORCID,Yoon Jinhwan4ORCID,Dodda Jagan Mohan5ORCID

Affiliation:

1. Department of Biomedical Engineering The Hong Kong Polytechnic University Kowloon Hong Kong 999077 China

2. Materials for Medicine Research Group School of Medicine The Royal College of Surgeons in Ireland (RCSI) Medical University of Bahrain Busaiteen 228 Bahrain 15503 Kingdom of Bahrain

3. Materials Science and Engineering University of Utah 122 S. Central Campus Drive, Room 304 Salt Lake City UT 84112 USA

4. Graduate Department of Chemical Materials Institute for Plastic Information and Energy Materials Sustainable Utilization of Photovoltaic Energy Research Center Pusan National University Busan 46241 Republic of Korea

5. New Technologies—Research Centre (NTC) University of West Bohemia Univerzitní 8 30100 Pilsen Czech Republic

Abstract

AbstractWith the advancement of medical and digital technologies, smart skin adhesive patches have emerged as a key player for complex medical purposes. In particular, skin adhesive patches with integrated electronics have created an excellent platform for monitoring health conditions and intelligent medication. However, the efficient design of the adhesive patches is still challenging as it requires a strong combination of network structure, adhesion, physical properties, and biocompatibility. To design an assimilated device, one must have a deep knowledge of various skin adhesive patches. This article provides a comprehensive review of the recent advances in skin‐adhesive patches, including hydrogel‐based adhesive patches, transdermal patches, and electronic skin (E‐skin) patches, for various biomedical applications such as wound healing, drug delivery, biosensing, and health monitoring. Furthermore, the key challenges, implementable strategies, and future designs that can potentially provide researchers in designing innovative multipurpose smart skin patches are discussed. These advanced approaches are promising for managing the health and fitness of patients who require regular medical care.

Funder

European Regional Development Fund

Hong Kong Polytechnic University

National Research Foundation of Korea

Publisher

Wiley

Subject

Electrochemistry,Condensed Matter Physics,Biomaterials,Electronic, Optical and Magnetic Materials

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