NIR‐Triggered Multifunctional NO Nanoplatform for Conquering Thermal Resistance in Biofilms

Author:

Zhou Bingshuai1,Dong Biao1ORCID,Hu Songtao1,Liu Wei1,Sun Liheng1,Xu Lin1,Bai Xue1,Wang Lin2,Qi Manlin2,Song Hongwei1

Affiliation:

1. State Key Laboratory on Integrated Optoelectronics College of Electronic Science and Engineering Jilin University Changchun 130012 China

2. Department of Oral Implantology Jilin Provincial Key Laboratory of Sciences and Technology for Stomatology Nanoengineering School and Hospital of Stomatology Jilin University Changchun 130021 China

Abstract

AbstractPhotothermal treatment (PTT) has emerged as a promising avenue for biofilm elimination, yet its potential drawbacks, such as local hyperpyrexia and bacterial heat resistance, have posed challenges. To address these concerns, an innovative nanoplatform (Au@mSiO2‐arg/ICG) is devised that integrates phototherapeutic and gas therapeutic functionalities. This multifaceted nanoplatform is composed of mesoporous silica‐coated Au nanorods (Au@mSiO2), supplemented with l‐arginine (l‐arg) and indocyanine green (ICG), and is engineered for mild temperature PTT aimed at biofilm eradication. Au@mSiO2‐arg/ICG nanoparticles (NPs) show excellent antibacterial effects through the generation of nitric oxide (NO) gas, heat, and reactive oxygen species (ROS) under 808 nm light irradiation. The ROS generated by ICG initiates a cascade reaction with l‐arg, ultimately yielding NO gas molecules. This localized release of NO not only effectively curbs the expression of heat shock proteins 70 mitigating bacterial thermoresistance, but also reduces extracellular polymeric substance allowing better penetration of the therapeutic agents. Furthermore, this nanoplatform achieves an outstanding biofilm elimination rate of over 99% in an abscess model under 808 nm light irradiation (0.8 W·cm−2), thereby establishing its potential as a dependable strategy for NO‐enhanced mild PTT and antibacterial photodynamic therapy (aPDT) in clinical settings.

Funder

National Natural Science Foundation of China

Major Basic Research Project of the Natural Science Foundation of the Jiangsu Higher Education Institutions

Publisher

Wiley

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