Litcius/Paper detail

Enabling Antibacterial and Antifouling Coating <i>via</i> Grafting of a Nitric Oxide-Releasing Ionic Liquid on Silicone Rubber

Yinghui Yuan, Yating Shang, Yingjie Zhou, Jiangna Guo, Feng Yan

2022Biomacromolecules23 citationsDOI

Abstract

Infections caused by bacteria and biofilms on the surfaces of biomedical devices and implants pose serious threats to public health. Herein, a nitric oxide (NO) gas-releasing quaternary ammonium-type ionic liquid (IL)-based coating on polydimethylsiloxane (PDMS), PDIL-NO, with effective and long-acting antibacterial and antifouling properties was prepared. N-(2-((2, 3-Dimethylbut-3-enoyl)oxy)ethyl)-N, N-dimethyloctan-1-aminium bromide (IL-Br), and 2-methyl-2-propenoic acid 2-(2-methoxyethoxy) ethyl ester were covalently grafted onto the surfaces of PDMS by a thiol–ene click chemical reaction, followed by incorporation of l-proline anions (Pro–) through anion exchange with Br– to adsorb NO gas. The prepared PDIL-NO showed a prolonged NO-releasing time (>1440 min) and a relatively high concentration (88 μM). Additionally, PDIL-NO possessed good and long-term antimicrobial activity, and could effectively reduce the adsorption of bovine serum albumin and adhesion of bacteria, as well as inhibit wound infection and reduce inflammation in vivo due to the synergetic effect of IL and the released NO. This study may provide a new approach to combat bacterial infections associated with biomedical devices and implants.

Topics & Concepts

BiofoulingGraftingSilicone rubberIonic liquidCoatingChemical engineeringNatural rubberPolymer chemistryChemistrySiliconePolymer scienceMaterials scienceOrganic chemistryPolymerCatalysisBiochemistryEngineeringMembraneMarine Biology and Environmental ChemistryNanoparticles: synthesis and applicationsBone Tissue Engineering Materials