Hydrophilic Modification Strategies to Enhance the Surface Biocompatibility of Poly(dimethylsiloxane)‐Based Biomaterials for Medical Applications

Author:

Sutthiwanjampa Chanutchamon1,Hong Seungpyo2,Kim Woo Ju3,Kang Shin Hyuk4,Park Hansoo1ORCID

Affiliation:

1. School of Integrative Engineering Chung‐Ang University 84 Heukseok‐ro, Heukseok‐dong, Dongjak‐gu Seoul 06974 Republic of Korea

2. Pharmaceutical Sciences Division School of Pharmacy University of Wisconsin Madison WI 53705 USA

3. Department of Plastic Surgery Chung‐Ang University Gwangmyeong Hospital Chung‐Ang University College of Medicine Gwangmyeong‐si Gyeonggi‐do 14353 Republic of Korea

4. Departments of Plastic and Reconstructive Surgery Biomedical Research Institute Chung‐Ang University Hospital Chung‐Ang University College of Medicine Seoul 06973 Republic of Korea

Abstract

AbstractPoly(dimethylsiloxane) (PDMS) has been widely employed in biomedical disciplines due to its several advantages, including biocompatibility, nontoxicity, and low‐cost preparation. However, the intrinsic hydrophobicity of this material encourages biofouling and reduces cell regulation capacity, thereby limiting its biomedical applicability. The purpose of this study is to explore the surface modification and functionalization of PDMS and PDMS‐based biomaterials to improve their properties for biomedical applications. The content of this review is organized based on physical and chemical surface modification strategies to improve surface hydrophilicity to enhance antibiofouling and the regulation of immunomodulation and cell modulation on the surface of PDMS and PDMS‐based biomaterials. Future developments in this area are also discussed.

Funder

National Research Foundation of Korea

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials

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