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ISSN Approved Journal | | IMPACT FACTOR 8.16 | | eISSN: 2582-5542 | |  Free Crossref DOI 

Fast Publication within 2 days | | Low Article Processing Charges | | Peer Reviewed and Referred Journal

Research and review articles are invited for publication in September 2026 (Volume 27, Issue 3) Submit Paper

Conceptualizing antibacterial approach for silk-based implants with electrospun cefiderocol nanofibers and PEO-coated Mg3ZnCa

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Hariharasudan Natarajan 1, *, PatriziaImielski 2, Prakash M Alagundi 1 and Periyasamy Siddhan 1

1 Central Silk Technological Research Institute, Center for product development and diversification, Silk Technical Textiles section, Central Silk Board, CSB Complex, BTM Layout, Madiwala, Bengaluru, India.
2 Technische Universität Berlin, Institute of Materials Science and Technology, Fachgebiet Werkstofftechnik/Chair of Materials Science and Engineering, Strasse des 17. Juni 135, 10623 Berlin, Germany.

Research Article

World Journal of Biology Pharmacy and Health Sciences, 2025, 23(03), 205–217

Article DOI: 10.30574/wjbphs.2025.23.3.0831

DOI url: https://doi.org/10.30574/wjbphs.2025.23.3.0831

Received on 03 August 2025; revised on 09 September 2025; accepted on 11 September 2025

Antibacterial functionality for silk-based implants remains as a critical area that needs improvement. This study presents a novel, stepwise antibacterial concept for infection-resistant implants. First, a Mg3ZnCa (ZX31) alloy was selected for its biodegradable properties and coated on the silk base, which was further enhanced using plasma electrolytic oxidation (PEO) for corrosion resistance. Next, electrospun nanofibers loaded with the cefiderocol were applied to the PEO-coated surface. Finally, bacteriophages were immobilized onto the nanofibers. The structure and antibacterial performance of each step were characterized using clinical analysis including electron microscopy imaging. Antibacterial testing against E. coli using ATCC 25922 demonstrated that phage–antibiotic co-release achieved complete bacterial eradication within one hour, compared to eight hours for cefiderocol-loaded fibers alone. Additionally, magnesium corrosion contributed to sterilization after ten hours. These results show the strong synergistic potential of combining magnesium degradation, antibiotic delivery, and phage therapy to prevent early-stage infections on silk implants, offering a promising route for future clinical applications.

Fibroin Sheet; Implant;ZX31; PEO; Cefiderocol Nanofibers; Antibacterial

https://wjbphs.com/sites/default/files/fulltext_pdf/WJBPHS-2025-0831.pdf

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Hariharasudan Natarajan, PatriziaImielski, Prakash M Alagundi and Periyasamy Siddhan. Conceptualizing antibacterial approach for silk-based implants with electrospun cefiderocol nanofibers and PEO-coated Mg3ZnCa. World Journal of Biology Pharmacy and Health Sciences, 2025, 23(03), 205–217. Article DOI: https://doi.org/10.30574/wjbphs.2025.23.3.0831.

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