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Novel Copper Oxide Bio-Nanocrystals to Target Outer Membrane Lectin of Vancomycin-Resistant Enterococcus faecium (VREfm): In Silico, Bioavailability, Antimicrobial, and Anticancer Potential

In present study, we used Olea europaea leaf extract to biosynthesize in situ Copper Oxide nanocrystals (CuO @OVLe NCs) with powerful antibacterial and anti-cancer capabilities. Physio-chemical analyses, such as UV/Vis, FTIR, XRD, EDX, SEM, and TEM, were applied to characterize CuO @OVLe NCs. The UV...

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Autores principales: Kandeel, Mahmoud, Sharaf, Mohamed, Hamad, Arshad Mahdi, O. Babalghith, Ahmad, Abdalla, Mohnad, Arif, Muhammad, Binsuwaidan, Reem, G. M. Attallah, Nashwah, Aladl Aladl Aladl, Hossam, Selim, Samy, Jaremko, Mariusz
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9696412/
https://www.ncbi.nlm.nih.gov/pubmed/36432057
http://dx.doi.org/10.3390/molecules27227957
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author Kandeel, Mahmoud
Sharaf, Mohamed
Hamad, Arshad Mahdi
O. Babalghith, Ahmad
Abdalla, Mohnad
Arif, Muhammad
Binsuwaidan, Reem
G. M. Attallah, Nashwah
Aladl Aladl Aladl, Hossam
Selim, Samy
Jaremko, Mariusz
author_facet Kandeel, Mahmoud
Sharaf, Mohamed
Hamad, Arshad Mahdi
O. Babalghith, Ahmad
Abdalla, Mohnad
Arif, Muhammad
Binsuwaidan, Reem
G. M. Attallah, Nashwah
Aladl Aladl Aladl, Hossam
Selim, Samy
Jaremko, Mariusz
author_sort Kandeel, Mahmoud
collection PubMed
description In present study, we used Olea europaea leaf extract to biosynthesize in situ Copper Oxide nanocrystals (CuO @OVLe NCs) with powerful antibacterial and anti-cancer capabilities. Physio-chemical analyses, such as UV/Vis, FTIR, XRD, EDX, SEM, and TEM, were applied to characterize CuO @OVLe NCs. The UV/Vis spectrum demonstrated a strong peak at 345 nm. Furthermore, FTIR, XRD, and EDX validated the coating operation’s contact with colloidal CuO @OVLe NCs. According to TEM and SEM analyses, CuO @OVLe NCs exhibited a spherical shape and uniform distribution of size with aggregation, for an average size of ~75 nm. The nanoparticles demonstrated a considerable antibacterial effect against E. faecium bacterial growth, as well as an increased inhibition rate in a dose-dependent manner on the MCF-7, PC3, and HpeG2 cancer cell lines and a decreased inhibition rate on WRL-68. Molecular docking and MD simulation were used to demonstrate the high binding affinity of a ligand (Oleuropein) toward the lectin receptor complex of the outer membrane to vancomycin-resistant E. faecium (VREfm) via amino acids (Leu 195, Thr 288, His 165, and Ser 196). Hence, our results expand the accessibility of OVLe’s bioactive components as a promising natural source for the manufacture of physiologically active components and the creation of green biosynthesis of metal nanocrystals.
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spelling pubmed-96964122022-11-26 Novel Copper Oxide Bio-Nanocrystals to Target Outer Membrane Lectin of Vancomycin-Resistant Enterococcus faecium (VREfm): In Silico, Bioavailability, Antimicrobial, and Anticancer Potential Kandeel, Mahmoud Sharaf, Mohamed Hamad, Arshad Mahdi O. Babalghith, Ahmad Abdalla, Mohnad Arif, Muhammad Binsuwaidan, Reem G. M. Attallah, Nashwah Aladl Aladl Aladl, Hossam Selim, Samy Jaremko, Mariusz Molecules Article In present study, we used Olea europaea leaf extract to biosynthesize in situ Copper Oxide nanocrystals (CuO @OVLe NCs) with powerful antibacterial and anti-cancer capabilities. Physio-chemical analyses, such as UV/Vis, FTIR, XRD, EDX, SEM, and TEM, were applied to characterize CuO @OVLe NCs. The UV/Vis spectrum demonstrated a strong peak at 345 nm. Furthermore, FTIR, XRD, and EDX validated the coating operation’s contact with colloidal CuO @OVLe NCs. According to TEM and SEM analyses, CuO @OVLe NCs exhibited a spherical shape and uniform distribution of size with aggregation, for an average size of ~75 nm. The nanoparticles demonstrated a considerable antibacterial effect against E. faecium bacterial growth, as well as an increased inhibition rate in a dose-dependent manner on the MCF-7, PC3, and HpeG2 cancer cell lines and a decreased inhibition rate on WRL-68. Molecular docking and MD simulation were used to demonstrate the high binding affinity of a ligand (Oleuropein) toward the lectin receptor complex of the outer membrane to vancomycin-resistant E. faecium (VREfm) via amino acids (Leu 195, Thr 288, His 165, and Ser 196). Hence, our results expand the accessibility of OVLe’s bioactive components as a promising natural source for the manufacture of physiologically active components and the creation of green biosynthesis of metal nanocrystals. MDPI 2022-11-17 /pmc/articles/PMC9696412/ /pubmed/36432057 http://dx.doi.org/10.3390/molecules27227957 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kandeel, Mahmoud
Sharaf, Mohamed
Hamad, Arshad Mahdi
O. Babalghith, Ahmad
Abdalla, Mohnad
Arif, Muhammad
Binsuwaidan, Reem
G. M. Attallah, Nashwah
Aladl Aladl Aladl, Hossam
Selim, Samy
Jaremko, Mariusz
Novel Copper Oxide Bio-Nanocrystals to Target Outer Membrane Lectin of Vancomycin-Resistant Enterococcus faecium (VREfm): In Silico, Bioavailability, Antimicrobial, and Anticancer Potential
title Novel Copper Oxide Bio-Nanocrystals to Target Outer Membrane Lectin of Vancomycin-Resistant Enterococcus faecium (VREfm): In Silico, Bioavailability, Antimicrobial, and Anticancer Potential
title_full Novel Copper Oxide Bio-Nanocrystals to Target Outer Membrane Lectin of Vancomycin-Resistant Enterococcus faecium (VREfm): In Silico, Bioavailability, Antimicrobial, and Anticancer Potential
title_fullStr Novel Copper Oxide Bio-Nanocrystals to Target Outer Membrane Lectin of Vancomycin-Resistant Enterococcus faecium (VREfm): In Silico, Bioavailability, Antimicrobial, and Anticancer Potential
title_full_unstemmed Novel Copper Oxide Bio-Nanocrystals to Target Outer Membrane Lectin of Vancomycin-Resistant Enterococcus faecium (VREfm): In Silico, Bioavailability, Antimicrobial, and Anticancer Potential
title_short Novel Copper Oxide Bio-Nanocrystals to Target Outer Membrane Lectin of Vancomycin-Resistant Enterococcus faecium (VREfm): In Silico, Bioavailability, Antimicrobial, and Anticancer Potential
title_sort novel copper oxide bio-nanocrystals to target outer membrane lectin of vancomycin-resistant enterococcus faecium (vrefm): in silico, bioavailability, antimicrobial, and anticancer potential
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9696412/
https://www.ncbi.nlm.nih.gov/pubmed/36432057
http://dx.doi.org/10.3390/molecules27227957
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