In Vitro Antibacterial and Anti-Inflammatory Properties of Imidazolium Poly(ionic liquids) Microspheres Loaded in GelMA-PEG Hydrogels

Author:

Zhou Chao1ORCID,Sun Mengdi1,Wang Danni1,Yang Mingmei23,Loh Jia Ling Celestine4,Xu Yawen2,Zhang Ruzhi2

Affiliation:

1. School of Medical and Health Engineering, Changzhou University, Changzhou 213164, China

2. Department of Dermatology, The Third Affiliated Hospital of Soochow University, Changzhou 213000, China

3. Department of Dermatology, Affiliated Changzhou Children’s Hospital of Nantong University, Changzhou 213000, China

4. DUKE-NUS Medical School, National University of Singapore, Singapore 169857, Singapore

Abstract

Repairing damaged tissue caused by bacterial infection poses a significant challenge. Traditional antibacterial hydrogels typically incorporate various components such as metal antimicrobials, inorganic antimicrobials, organic antimicrobials, and more. However, drawbacks such as the emergence of multi-drug resistance to antibiotics, the low antibacterial efficacy of natural agents, and the potential cytotoxicity associated with metal antibacterial nanoparticles in hydrogels hindered their broader clinical application. In this study, we successfully developed imidazolium poly(ionic liquids) (PILs) polymer microspheres (APMs) through emulsion polymerization. These APMs exhibited notable antibacterial effectiveness and demonstrated minimal cell toxicity. Subsequently, we integrated the APMs into a gelatin methacryloyl (GelMA)—polyethylene glycol (PEG) hydrogel. This composite hydrogel not only showcased strong antibacterial and anti-inflammatory properties but also facilitated the migration of human skin fibroblasts (HSF) and human umbilical vein endothelial cells (HUVECs) and promoted osteogenic differentiation in vitro.

Funder

Natural Science Foundation of Jiangsu Province, China

National Natural Science Foundation of China

China Postdoctoral Science Foundation

Publisher

MDPI AG

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