Eco-Friendly and Low-Cost Synthesis of Transparent Antiviral- and Antibacterial-Coated Films Based on Cu2O and MIL-53(Al)

被引:0
作者
Gamonchuang, Jirasak [1 ]
Meeklinhom, Sorrawit [1 ]
Muangnapoh, Tanyakorn [1 ]
Imhan, Chalida [2 ]
Chantho, Varissara [3 ]
Sillapaprayoon, Siwapech [3 ]
Pimtong, Wittaya [3 ]
Warin, Choochart [4 ]
Isanapong, Jantiya [5 ]
Ratanatawanate, Chalita [2 ]
Kumnorkaew, Pisist [1 ]
机构
[1] Natl Sci & Technol Dev Agcy NSTDA, Natl Nanotechnol Ctr NANOTEC, Innovat Nanocoating Res Team, Khlong Nueng 12120, Pathum Thani, Thailand
[2] Natl Sci & Technol Dev Agcy NSTDA, Natl Nanotechnol Ctr NANOTEC, Environm Nanotechnol Res Team, Khlong Nueng 12120, Pathum Thani, Thailand
[3] Natl Sci & Technol Dev Agcy NSTDA, Natl Nanotechnol Ctr NANOTEC, Nano Safety & Bioact Res Team, Khlong Nueng 12120, Pathum Thani, Thailand
[4] Natl Sci & Technol Dev Agcy NSTDA, Natl Nanotechnol Ctr NANOTEC, Nanocharacterizat Res Team, Khlong Nueng 12120, Pathum Thani, Thailand
[5] King Mongkuts Univ Technol North Bangkok KMUTNB, Fac Appl Sci, Bangkok 10800, Thailand
来源
ACS APPLIED BIO MATERIALS | 2024年 / 7卷 / 11期
关键词
cuprous oxide; metal-organic framework; MIL-53(Al); composite polymer; antibacterialactivity; antiviral activity; ANTIMICROBIAL ACTIVITY; POLYMER BINDER; COPPER; METAL; NANOPARTICLES; ZEBRAFISH; STABILITY; GLUCOSE;
D O I
10.1021/acsabm.4c00956
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
This research presents the development of an innovative antimicrobial coating consisting of cuprous oxide (Cu2O) integrated with the metal-organic framework MIL-53(Al) through an eco-friendly and low-cost synthesis method that employs glucose as a reducing agent under mild conditions. The microstructural properties of the composite materials were characterized by using X-ray diffraction (XRD) and transmission electron microscopy (TEM). The antibacterial efficacy of the Cu2O-MIL-53(Al) (CuM) composite was assessed against Escherichia coli and Staphylococcus aureus, achieving a reduction efficacy of 99.99% with 5% copper incorporated into the MIL-53(Al) framework within a contact time of 24 h. The incorporation of CuM into a macromolecular host matrix of polyurethane-carboxymethylcellulose (CuM/PUD-CMC), applied as a coating on a low-cost plastic film, produced a transparent film with 87.10% transparency. This coating demonstrated a 99.99% reduction in E. coli and S. aureus populations within a contact time of 24 h. The CuM/PUD-CMC coating demonstrated substantial antiviral efficacy, achieving inactivation rates of 99.35% for Human Coronavirus 229E, 99.40% for Influenza A virus, and 97.76% for Enterovirus 71 within a contact time of 5 min. The CuM nanoparticles exhibited low toxicity toward zebrafish while effectively eradicating bacteria and inactivating viruses. The proposed low-cost material and coating method demonstrate significant potential as a broad-spectrum antimicrobial and antiviral agent, highlighting its suitability for various applications in biomedical and healthcare formulations.
引用
收藏
页码:7280 / 7291
页数:12
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