Modification of SWCNTs with hybrid materials ZnO–Ag and ZnO–Au for enhancing bactericidal activity of phagocytic cells against Escherichia coli through NOX2 pathway

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作者
Osamah Al Rugaie
Majid S. Jabir
Mustafa K. A. Mohammed
Ruaa H. Abbas
Duha S. Ahmed
Ghassan M. Sulaiman
Salman A. A. Mohammed
Riaz A. Khan
Khalid A. Al-Regaiey
Mansour Alsharidah
Khalid M. Mohany
Hamdoon A. Mohammed
机构
[1] Qassim University,Department of Basic Medical Sciences, College of Medicine and Medical Sciences
[2] University of Technology,Department of Applied Sciences
[3] Al-Mustaqbal University College,Department of Medical Physics
[4] Al-Farahidi University,Collage of Dentistry
[5] Qassim University,Department of Pharmacology and Toxicology, College of Pharmacy
[6] Qassim University,Department of Medicinal Chemistry and Pharmacognosy, College of Pharmacy
[7] King Saud University,Department of Physiology, College of Medicine
[8] Qassim University,Department of Physiology, College of Medicine
[9] Assiut University,Department of Medical Biochemistry and Molecular Biology, Faculty of Medicine
[10] Al-Azhar University,Department of Pharmacognosy and Medicinal Plants, Faculty of Pharmacy
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Zinc oxide-silver (ZnO–Ag), and zinc oxide-gold (ZnO–Au) nano-composites were prepared through wet chemical process and laced into single-walled carbon nanotubes (SWCNTs) to yield ZnO–Ag-SWCNTs, and ZnO–Au-SWCNTs hybrids. These nano-composite-laced SWCNTs hybrids were characterized using Raman spectroscopic, X-ray diffraction (XRD), scanning electron microscopy (SEM), and transmission electron microscopy (TEM) analyses. The hybrids were evaluated for their effects on phagocytic cells and bactericidal activity against the gram-negative bacteria E. coli. Their phagocytic cell activities and intracellular killing actions were found to be significantly increased, as the ZnO–Ag-SWCNTs and ZnO–Au-SWCNTs nano-hybrids induced widespread clearance of Escherichia coli. An increase in the production of reactive oxygen species (ROS) also led to upregulated phagocytosis, which was determined mechanistically to involve the phagocyte NADPH oxidase (NOX2) pathway. The findings emphasized the roles of ZnO–Ag- and ZnO–Au-decorated SWCNTs in the prevention of bacterial infection by inhibiting biofilm formation, showing the potential to be utilized as catheter coatings in the clinic.
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  • [1] Modification of SWCNTs with hybrid materials ZnO-Ag and ZnO-Au for enhancing bactericidal activity of phagocytic cells against Escherichia coli through NOX2 pathway
    Al Rugaie, Osamah
    Jabir, Majid S.
    Mohammed, Mustafa K. A.
    Abbas, Ruaa H.
    Ahmed, Duha S.
    Sulaiman, Ghassan M.
    Mohammed, Salman A. A.
    Khan, Riaz A.
    Al-Regaiey, Khalid A.
    Alsharidah, Mansour
    Mohany, Khalid M.
    Mohammed, Hamdoon A.
    SCIENTIFIC REPORTS, 2022, 12 (01)