Novel metal peroxide nanoboxes restrain Clostridioides difficile infection beyond the bactericidal and sporicidal activity

Author:

Yang Li‐Xing12ORCID,Lai Yi‐Hsin3,Cheung Chun In1,Ye Zhi4,Huang Tzu‐Chi1,Wang Yu‐Chin4,Chin Yu‐Cheng1,Chia Zi‐Chun1,Chen Ya‐Jyun1,Li Meng‐Jia3,Tseng Hsiu‐Ying4,Tsai Yi‐Tseng1,Zhang Zhi‐Bin1,Chen Kuan‐Hsu1,Tsai Bo‐Yang3,Shieh Dar‐Bin23567,Lee Nan‐Yao89,Tsai Pei‐Jane341011,Huang Chih‐Chia15ORCID

Affiliation:

1. Department of Photonics National Cheng Kung University Tainan Taiwan

2. School of Dentistry and Institute of Oral Medicine National Cheng Kung University Tainan Taiwan

3. Institute of Basic Medicine National Cheng Kung University Tainan Taiwan

4. Department of Medical Laboratory Science and Biotechnology National Cheng Kung University Tainan Taiwan

5. Center of Applied Nanomedicine and Core Facility Center National Cheng Kung University Tainan Taiwan

6. iMANI Center of the National Core Facility for Biopharmaceuticals National Science and Technology Council Taipei Taiwan

7. Department of Stomatology National Cheng Kung University Hospital Tainan Taiwan

8. Department of Medicine National Cheng Kung University Tainan Taiwan

9. Division of Infectious Diseases, Department of Internal Medicine and Center for Infection Control National Cheng Kung University Hospital Tainan Taiwan

10. Research Center of Infectious Disease and Signaling National Cheng Kung University Tainan Taiwan

11. Department of Pathology, National Cheng Kung University Hospital, College of Medicine National Cheng Kung University Tainan Taiwan

Abstract

AbstractClostridioides difficile spores are considered as the major source responsible for the development of C. difficile infection (CDI), which is associated with an increased risk of death in patients and has become an important issue in infection control of nosocomial infections. Current treatment against CDI still relies on antibiotics, which also damage normal flora and increase the risk of CDI recurrence. Therefore, alternative therapies that are more effective against C. difficile bacteria and spores are urgently needed. Here, we designed an oxidation process using H2O2 containing PBS solution to generate Cl and peroxide molecules that further process Ag and Au ions to form nanoboxes with Ag–Au peroxide coat covering Au shell and AgCl core (AgAu‐based nanoboxes). The AgAu‐based nanoboxes efficiently disrupted the membrane structure of bacteria/spores of C. difficile after 30–45 min exposure to the highly reactive Ag/Au peroxide surface of the nano structures. The Au‐enclosed AgCl provided sustained suppression of the growth of 2 × 107 pathogenic Escherichia coli for up to 19 days. In a fecal bench ex vivo test and in vivo CDI murine model, biocompatibility and therapeutic efficacy of the AuAg nanoboxes to attenuate CDI was demonstrated by restoring the gut microbiota and colon mucosal structure. The treatment successfully rescued the CDI mice from death and prevented their recurrence mediated by vancomycin treatment. The significant outcomes indicated that the new peroxide‐derived AgAu‐based nanoboxes possess great potential for future translation into clinical application as a new alternative therapeutic strategy against CDI.

Funder

Ministry of Science and Technology, Taiwan

Publisher

Wiley

Subject

Pharmaceutical Science,Biomedical Engineering,Biotechnology

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