A Review on Electroactive Polymer–Metal Composites: Development and Applications for Tissue Regeneration

Author:

Acharya Rumi12,Dutta Sayan Deb13ORCID,Patil Tejal V.12,Ganguly Keya1,Randhawa Aayushi12ORCID,Lim Ki-Taek123ORCID

Affiliation:

1. Department of Biosystems Engineering, Kangwon National University, Chuncheon 24341, Republic of Korea

2. Interdisciplinary Program in Smart Agriculture, Kangwon National University, Chuncheon 24341, Republic of Korea

3. Institute of Forest Science, Kangwon National University, Chuncheon 24341, Republic of Korea

Abstract

Electroactive polymer–metal composites (EAPMCs) have gained significant attention in tissue engineering owing to their exceptional mechanical and electrical properties. EAPMCs develop by combining an electroactive polymer matrix and a conductive metal. The design considerations include choosing an appropriate metal that provides mechanical strength and electrical conductivity and selecting an electroactive polymer that displays biocompatibility and electrical responsiveness. Interface engineering and surface modification techniques are also crucial for enhancing the adhesion and biocompatibility of composites. The potential of EAPMC-based tissue engineering revolves around its ability to promote cellular responses, such as cell adhesion, proliferation, and differentiation, through electrical stimulation. The electrical properties of these composites can be used to mimic natural electrical signals within tissues and organs, thereby aiding tissue regeneration. Furthermore, the mechanical characteristics of the metallic components provide structural reinforcement and can be modified to align with the distinct demands of various tissues. EAPMCs have extraordinary potential as regenerative biomaterials owing to their ability to promote beneficial effects in numerous electrically responsive cells. This study emphasizes the characteristics and applications of EAPMCs in tissue engineering.

Funder

National Research Foundation of Korea

Publisher

MDPI AG

Subject

Biomedical Engineering,Biomaterials

Reference144 articles.

1. Electroactive polymers for tissue regeneration: Developments and perspectives;Ning;Prog. Polym. Sci.,2018

2. Models of displacement and blocking force of ionic-polymer metal composites based on actuation mechanism;Yang;Appl. Phys. A,2020

3. Polymeric materials as artificial muscles: An overview;Ariano;J. Appl. Biomater. Funct. Mater.,2015

4. Aziz, M.R.F. (2020). A Novel Polypyrrole-Polyurethane Patch for Cardiac Electric Signal Restoration. [Ph.D. Thesis, University of Toronto].

5. Recent progress on electroactive polymers: Synthesis, properties and applications;Rahman;Ceramics,2021

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