Multifunctional Epidermal Patches
From Design to Application
Royal Society of Chemistry (Publisher)
1st Edition
Will be published approx. on 11. November 2026
Book
Hardback
788 pages
978-1-83767-773-3 (ISBN)
Description
This authoritative volume presents a comprehensive exploration of multifunctional epidermal patches, integrating cutting-edge advances in polymer science, bioelectronics, and nanobiotechnology. Edited by Jagan Mohan Dodda, Nureddin Ashammakhi, and Jaeyun Kim, the book systematically covers the synthesis, structural design, and functional characterization of smart patches engineered for real-time diagnostics and targeted therapeutics. Topics include transdermal delivery systems, microneedle arrays, hydrogel matrices, bioresorbable substrates, and self-powered e-skin platforms. Emphasis is placed on the interplay between mechanical compliance, biochemical responsiveness, and electronic integration for applications in wound healing, tissue regeneration, neural and cardiac monitoring, and personalized medicine. With contributions from leading global researchers, this volume serves as a critical reference for materials scientists, biomedical engineers, and clinical innovators seeking to advance the field of wearable theranostic devices.
More details
Series
Language
English
Place of publication
Cambridge
United Kingdom
Target group
Professional and scholarly
Product notice
Unsewn / adhesive bound
Dimensions
Height: 234 mm
Width: 156 mm
ISBN-13
978-1-83767-773-3 (9781837677733)
DOI
10.1039/9781837677757
Copyright in bibliographic data is held by Nielsen Book Services Limited or its licensors: all rights reserved.
Schweitzer Classification
Persons
Editor
University of West Bohemia, Czech Republic
Michigan State University, USA
Sungkyunkwan University, Republic of Korea
Content
Introduction to Multifunctional Epidermal Patches
Skin Adhesive Patches: Introduction, Classification and Biomedical Applications
Fabrication of Smart Skin Patches
Characterization of Smart Patches
Transdermal Patches: Design and Current Approaches
Mathematical Models of Transdermal Delivery in Patches
Hydrogel Based Skin Adhesive Patches
Smart Microfluidic Patches
Smart Self-healing Patches
Smart Patches for Bone Tissue Regeneration
Smart Patches for Wound Management
Smart Nanocomposite Patches for Biomedical Applications
Smart Neural Patches
Advances in Smart Cardiac Patches
Smart Wearable Patches: Current Stage and Emerging
Smart Electronic Skin (E-skin) Patches for Health Monitoring
Self-powered E-skin Patches
Stretchable Sensors for E-skin Patches
Recent Advances in Mucosal Surface Patches
Smart Bioresorbable Patches
Toxicity, Regulatory Considerations, and Commercialization Aspects of Smart Patches
Current and Future Prospects for Smart Patches
Skin Adhesive Patches: Introduction, Classification and Biomedical Applications
Fabrication of Smart Skin Patches
Characterization of Smart Patches
Transdermal Patches: Design and Current Approaches
Mathematical Models of Transdermal Delivery in Patches
Hydrogel Based Skin Adhesive Patches
Smart Microfluidic Patches
Smart Self-healing Patches
Smart Patches for Bone Tissue Regeneration
Smart Patches for Wound Management
Smart Nanocomposite Patches for Biomedical Applications
Smart Neural Patches
Advances in Smart Cardiac Patches
Smart Wearable Patches: Current Stage and Emerging
Smart Electronic Skin (E-skin) Patches for Health Monitoring
Self-powered E-skin Patches
Stretchable Sensors for E-skin Patches
Recent Advances in Mucosal Surface Patches
Smart Bioresorbable Patches
Toxicity, Regulatory Considerations, and Commercialization Aspects of Smart Patches
Current and Future Prospects for Smart Patches