Gamma-Rays Empowered the Antimicrobial Potential of TiO2/Fe3O4/MIL-101(Cr) Nanocomposite against Drug-Resistant Bacteria and Pathogenic Fungi

被引:1
|
作者
Abd Elkodous, M. [1 ]
Abdel-Fatah, Sobhy S. [2 ]
El-Sayyad, Gharieb S. [2 ,3 ]
机构
[1] Toyohashi Univ Technol, Dept Elect & Elect Informat Engn, 1-1 Hibarigaoka,Tempaku Cho, Toyohashi, Aichi 4418580, Japan
[2] Egyptian Atom Energy Author EAEA, Natl Ctr Radiat Res & Technol NCRRT, Drug Radiat Res Dept, Drug Microbiol Lab, Cairo, Egypt
[3] Ahram Canadian Univ ACU, Fac Pharm, Dept Microbiol & Immunol, Giza, Egypt
关键词
Metal-organic frameworks; Antimicrobial activity; TiO2; NPs; Staphylococcus aureus; ANTIBIOFILM ACTIVITIES; SILVER NANOPARTICLES; ANTIBACTERIAL; IRRADIATION; EFFICIENCY; RADIATION; REMOVAL;
D O I
10.1007/s10904-024-03076-6
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
One of the biggest global threats to contemporary medicine and society at large is antibiotic resistance, which is also one of the least understood by professionals and the general public. Emerging crystalline materials called metal-organic frameworks (MOF) find extensive uses in biomedical engineering. Because of their excellent stability, and high porosity, MOFs are useful platforms for designing a variety of disinfectant agents against some pathogenic microbes that causing serious diseases. In this work, the effective hydrothermal synthesis of MIL-101(Cr) as a MOF substance was the main focus of originality and scientific value. Then, using a reduction-precipitation method, Fe2O3 material integrated the produced MOF structure. To synthesize the TiO2/Fe3O4/MIL-101(Cr) composite, we used a simple hydrothermal in situ growth technique. The XRD and HR-TEM analyses of the newly synthesized MOF-Fe2O3/TiO2 composite essentially confirmed its crystallinity and formation with the precise shape and size. Data clearly demonstrated that Candida albicans was the most susceptible organism to all three kinds of synthesized samples, with documented MIC values for MOF-Fe2O3/TiO2 at 62.5 mu g mL(- 1). Results further revealed that MOF-Fe2O3/TiO2 had the same MIC values of 62.5 mu g mL(- 1) against Staphylococcus aureus, and Bacillus subtilis. Positively, the amount of bacterial protein removed is directly proportional after increasing the concentration of MOF, MOF-Fe2O3, and MOF-Fe2O3/TiO2 and counted to be 99.89, 200.89, and 410.10 mu g mL(- 1) following the treatment with MOF, MOF-Fe2O3, and MOF-Fe2O3/TiO2, respectively. The promising results demonstrates the antibacterial features of the MOF-Fe2O3, and MOF-Fe2O3/TiO2 and describes the appearance of holes in the S. aureus membrane, which help in making the proteins bleed out from the S. aureus cytoplasm. Eventually, after irradiation with gamma dose (100.0 kGy), the potential antimicrobial activity of the synthesized MOF-Fe2O3/TiO2 was increased.
引用
收藏
页码:4533 / 4546
页数:14
相关论文
共 16 条
  • [1] Synergistic effect of SrTiO 3 /CuFe 2 O 4 /MIL-101(Co) as a MOF composite under Gamma-rays for antimicrobial potential versus bacteria and pathogenic fungi
    Janani, Baadal Jushi
    Syed, Asad
    Majeed, Noor Abdulsatar
    Shleghm, Maytham Razaq
    Alkhafaij, Mahdi Abdulkhudur ali azlze
    Bahair, Hala
    Abdulwahab, Heba Muhammad Hussein
    Elgorban, Abdallah M.
    AL-Shwaiman, Hind A.
    Wong, Ling Shing
    COLLOIDS AND SURFACES B-BIOINTERFACES, 2024, 241
  • [2] Antimicrobial effects of TiO2 and Ag2O nanoparticles against drug-resistant bacteria and leishmania parasites
    Allahverdiyev, Adil M.
    Abamor, Emrah Sefik
    Bagirova, Malahat
    Rafailovich, Miriam
    FUTURE MICROBIOLOGY, 2011, 6 (08) : 933 - 940
  • [3] Cu2O/Fe3O4/MIL-101(Fe) nanocomposite as a highly efficient and recyclable visible-light-driven catalyst for degradation of ciprofloxacin
    Doan, Van-Dat
    Huynh, Bao-An
    Pham, Hoang Ai Le
    Vasseghian, Yasser
    Le, Van Thuan
    ENVIRONMENTAL RESEARCH, 2021, 201
  • [4] Functional Fe3O4/TiO2 core/shell magnetic nanoparticles as photokilling agents for pathogenic bacteria
    Chen, Wei-Jen
    Tsai, Pei-Jane
    Chen, Yu-Chie
    SMALL, 2008, 4 (04) : 485 - 491
  • [5] Fe3O4/TiO2 core/shell magnetic nanoparticle-based photokilling of pathogenic bacteria
    Chen, Wei-Jen
    Chen, Yu-Chie
    NANOMEDICINE, 2010, 5 (10) : 1585 - 1593
  • [6] A magnetically separable TiO2–H3PW12O40@Fe3O4/EN as magnetic core–shell nanoparticles on metal–organic framework MIL-101(Cr)
    Milad Taheri
    Razieh Mohebat
    Journal of Materials Science: Materials in Electronics, 2021, 32 : 3104 - 3115
  • [7] Synthesis and Characterization of Silver Nanoparticles (Ag), Magnetite Nanoparticles (Fe3O4), and Magnetite/Silver Core-Shell (Fe3O4/Ag) Nanoparticles, and Their Application against Drug-Resistant Bacteria
    Alzoubi, Fedda
    Banihani, Wajde
    Banihani, Rehan
    Al-Khateeb, Hasan
    Al-Qadi, Mohammed
    Bataineh, Qais Al
    JOURNAL OF CLUSTER SCIENCE, 2024, 35 (08) : 2979 - 2989
  • [8] Antimicrobial Efficacy of CdFe2O4/Fe2O3 Nanocomposite Against Extensively Drug-Resistant Pseudomonas aeruginosa: Influence of Calcination Temperature and Crystalline Phases
    Smail, Abdalla Mohammed
    Babakr, Karukh Ali
    Qurbani, Karzan
    Pekdemir, Sibel Selcuk
    Qader, Ibrahim Nazem
    Hamid, Dlshad Aziz
    Khdhr, Rahel Nadir
    Pekdemir, Mustafa Ersin
    Mahmood, Peshawa H.
    Ibrahim, Pshdar Ahmed
    Salih, Ibrahim Luqman
    Rasul, Hazhar Hamad
    Omar, Sleman Yousif
    Kok, Mediha
    BIONANOSCIENCE, 2025, 15 (02)
  • [9] TiO2-Fe3O4/MIL-101(Cr)磁性复合光催化材料的制备及其光催化性能
    李小娟
    黄斌
    李小飞
    林振宇
    林春香
    刘以凡
    复合材料学报, 2017, 34 (07) : 1596 - 1602
  • [10] A magnetically separable TiO2-H3PW12O40@Fe3O4/EN as magnetic core-shell nanoparticles on metal-organic framework MIL-101(Cr)
    Taheri, Milad
    Mohebat, Razieh
    JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS, 2021, 32 (03) : 3104 - 3115