Dual Phase‐Conversion Strategy Reinforced Otitis Media Therapy Using Metastable Iron Sulfide‐Loaded Thermosensitive Hydrogel

Author:

Li Ziwei1,Gong Rui12,Abbas Ghulam2,Feng Xiaozhou3,Wang Xiaonan4,Wang Jie1,Huang Haibing1,Han Jinghong1,Zhang Bairu4,Nie Guohui15,Gao Lizeng4,Ding Hui1ORCID

Affiliation:

1. Shenzhen Key Laboratory of Nanozymes and Translational Cancer Research Department of Otolaryngology Shenzhen Institute of Translational Medicine The First Affiliated Hospital of Shenzhen University Shenzhen Second People's Hospital Guangzhou Medical University Shenzhen 518000 China

2. Institute of Synthetic Biology Shenzhen Institute of Advanced Technology Chinese Academy of Sciences Shenzhen 518055 China

3. Department of Anesthesiology New Jersey Medical School Rutgers The State University of New Jersey Newark NJ 07305 USA

4. CAS Engineering Laboratory for Nanozyme Institute of Biophysics Chinese Academy of Sciences Beijing 100101 China

5. State Key Laboratory of Chemical Oncogenomics Guangdong Provincial Key Laboratory of Chemical Genomics Peking University Shenzhen Graduate School Shenzhen 518055 China

Abstract

AbstractOtitis media (OM) is a common bacterial disease in otolaryngology, which has a high incidence rate and seriously affects people's health and quality of life. The abuse of antibiotics is a severe public health problem worldwide, contributing to the emergence of multidrug‐resistant bacteria and vestibular/cochlear damage, leading to sensorineural hearing loss. In this study, PLGA‐PEG‐PLGA thermosensitive hydrogel (PPPTH) is employed as a drug delivery carrier to deliver metastable cystine‐denoted iron sulfides compounds (Cys‐nFeS) to treat Staphylococcus aureus (S. aureus)‐induced OM by topical injection through the eardrum. The combination of Cys‐nFeS and PPPTH (Cys‐nFeS/PPPTH) prevents Cys‐nFeS from rapidly oxidizing and constantly releasing Cys‐nFeS, fulfilling the goal of continuous therapy. The destructive effect of Cys‐nFeS/PPPTH on bacteria and bacterial biofilms in vitro and in vivo is evaluated. The results show that Cys‐nFeS/PPPTH has good antibacterial and biofilm destruction effects, low cytotoxicity, and excellent anti‐inflammatory effects. Moreover, it is found that Cys‐nFeS/PPPTH can repair S. aureus‐induced hearing loss in OM. This study demonstrates the promising potential of Cys‐nFeS/PPPTH for middle ear delivery and antibacterial treatment.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Guangdong Province

Sanming Project of Medicine in Shenzhen

Publisher

Wiley

Subject

Pharmacology (medical),Biochemistry (medical),Genetics (clinical),Pharmaceutical Science,Pharmacology,Medicine (miscellaneous)

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