Automated electrical stimulation therapy accelerates re-epithelialization in a 3D in vitro human skin wound model

Author:

Lim Lay Keng Priscilla1,Balakrishnan Yamini1,Goh Gracia1,Tham Khek Chian1,Ng Yi Zhen2,Lunny Declan Patrick3,Leavesley David45,Bonnard Carine67

Affiliation:

1. Agency for Science Technology and Research, 54759, A*STAR Skin Research Laboratories, Model Development, Singapore, Singapore;

2. Agency for Science Technology and Research, 54759, Skin Research Institute of Singapore, Tissue Technologies, Singapore, Singapore;

3. Agency for Science Technology and Research, 54759, Skin Research Institute of Singapore, Asian Skin Biobank, Singapore, Singapore;

4. Agency for Science Technology and Research, 54759, Skin Research Institute of Singapore, Tissue Technologies, Singapore, Singapore

5. The University of Newcastle, 5982, Biomedical Sciences and Pharmacy, Callaghan, New South Wales, Australia;

6. Agency for Science Technology and Research, 54759, A*STAR Skin Research Laboratories, Model Development, Singapore, Singapore

7. Agency for Science Technology and Research, 54759, Skin Research Institute of Singapore, Asian Skin Biobank, Singapore, Singapore;

Publisher

Mary Ann Liebert Inc

Subject

Critical Care and Intensive Care Medicine,Emergency Medicine

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