Intelligent bacteria‐targeting ZIF‐8 composite for fluorescence imaging‐guided photodynamic therapy of drug‐resistant superbug infections and burn wound healing

Author:

Li Xiaoxue1,Wang Wei1,Gao Qiuxia12,Lai Shanshan1,Liu Yan3,Zhou Sitong4,Yan Yan1,Zhang Jie1,Wang Huanhuan1,Wang Jiamei1,Feng Yi1,Yang Ronghua5,Su Jianyu6,Li Bin2ORCID,Liao Yuhui1ORCID

Affiliation:

1. Molecular Diagnosis and Treatment Center for Infectious Diseases Dermatology Hospital of Southern Medical University Guangzhou Guangdong China

2. School of Inspection Ningxia Medical University Yinchuan Ningxia China

3. Institute for Health Innovation and Technology National University of Singapore Singapore Singapore

4. Department of Dermatology The First People's Hospital of Foshan Foshan Guangdong China

5. Department of Burn and Plastic Surgery Guangzhou First People's Hospital South China University of Technology Guangzhou Guangdong China

6. School of Food Science and Engineering South China University of Technology Guangzhou Guangdong China

Abstract

AbstractInfected burn wounds are characterized by persistent drug‐resistant bacterial infection coupled with an inflammatory response, impeding the wound‐healing process. In this study, an intelligent nanoparticle system (CCM+TTD@ZIF‐8 NPs) was prepared using curcumin (CCM), an aggregation‐induced emission luminogens (TTD), and ZIF‐8 for infection‐induced wound healing. The CCM+TTD@ZIF‐8 NPs showed multiple functions, including bacteria targeting, fluorescence imaging and pH response‐guided photodynamic therapy (PDT), and anti‐inflammatory. The positive charges of ZIF‐8 NPs allowed the targeting of drug‐resistant bacteria in infected wounds, thereby realizing fluorescence imaging of bacteria by emitting red fluorescence at the infected site upon blue light irradiation. The pH‐responsive characteristics of the CCM+TTD@ZIF‐8 NPs also enabled controllable CCM release onto the infected wound site, thereby promoting the specific accumulation of ROS at the infected site, with outstanding bactericidal efficacy against drug‐resistant Staphylococcus aureus (S. aureus) and Pseudomonas aeruginosa (P. aeruginosa) strains in vitro/in vivo. Additionally, due to the excellent bactericidal effect and anti‐inflammatory properties of CCM+TTD@ZIF‐8 NPs combined with blue light irradiation, the regeneration of epidermal tissue, angiogenesis, and collagen deposition was achieved, accelerating the healing process of infected burn wounds. Therefore, this CCM+TTD@ZIF‐8 NPs with multifunctional properties provides great potential for infected burn wound healing.

Funder

National Key Research and Development Program of China

Science Fund for Distinguished Young Scholars of Guangdong Province

National Natural Science Foundation of China

China Postdoctoral Science Foundation

Basic and Applied Basic Research Foundation of Guangdong Province

Publisher

Wiley

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