Ultra‐Conformable Ionic Skin with Multi‐Modal Sensing, Broad‐Spectrum Antimicrobial and Regenerative Capabilities for Smart and Expedited Wound Care
Top Cited Papers
Open Access
- 15 February 2021
- journal article
- research article
- Published by Wiley in Advanced Science
- Vol. 8 (9), 2004627
- https://doi.org/10.1002/advs.202004627
Abstract
While rapid wound healing is essential yet challenging, there is also an unmet need for functional restoration of sensation. Inspired by natural skin, an ultra‐conformable, adhesive multi‐functional ionic skin (MiS) with multi‐modal sensing capability is devised for smart and expedited wound care. The base of MiS is a unique skin‐like, conductive and self‐adaptive adhesive polyacrylamide/starch double‐network hydrogel (PSH) and self‐powered, flexible, triboelectric sensor(s) is integrated on top of PSH for multi‐tactile sensing. MiS could enhance wound contraction, collagen deposition, angiogenesis, and epidermis formation in a full‐thickness skin defect wound model in vivo, while significantly inhibiting the biofilm formation of a wide range of microorganisms. MiS also exhibits multi‐modal sensing capability for smart and instant therapeutics and diagnostics, including skin displacement or joint motion, temperature, pressure and tissue exudate changes of wound bed, and locally releasing drugs in a pH‐responsive manner. More importantly, MiS could restore the skin‐mimicking tactile sensing function of both touch location and intensity, and thus could be used as a human‐machine interface for accurate external robotic control. MiS demonstrates a new comprehensive paradigm of combining wound diagnosis and healing, broad‐spectrum anti‐microbial capability and restoration of multi‐tactile sensing for the reparation of severe wound.Keywords
Funding Information
- National Natural Science Foundation of China (82025025, 51672184, 31801585, 81622032)
- National Key Research and Development Program of China (2020YFC1107401)
- Natural Science Foundation of Jiangsu Province (BK20180837)
This publication has 87 references indexed in Scilit:
- Interactions of Methicillin Resistant Staphylococcus aureus USA300 and Pseudomonas aeruginosa in Polymicrobial Wound InfectionPLOS ONE, 2013
- Adhesion of soft viscoelastic adhesives on periodic rough surfacesSoft Matter, 2012
- Mechanical response of pig skin under dynamic tensile loadingInternational Journal of Impact Engineering, 2011
- Impact of mild acid hydrolysis on structure and digestion properties of waxy maize starchFood Chemistry, 2010
- Nonrandom Distribution of Pseudomonas aeruginosa and Staphylococcus aureus in Chronic WoundsJournal of Clinical Microbiology, 2009
- Human skin wounds: A major and snowballing threat to public health and the economyWound Repair and Regeneration, 2009
- Local Inflammation Induces Complement Crosstalk Which Amplifies the Antimicrobial ResponsePLoS Pathogens, 2009
- Viscoelastic response of human skin to low magnitude physiologically relevant shearJournal of Biomechanics, 2008
- Candida albicansSternal Wound Infections: A Chronic and Recurrent Complication of Median SternotomyClinical Infectious Diseases, 2002
- Relationship Between Skin Temperature and the Insensible Perspiration of the Human Skin**From the Unilever Research Laboratory, Vlaardingen, The Netherlands.Journal of Investigative Dermatology, 1966