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Development of Plant Protein Derived Tri Angular Shaped Nano Zinc Oxide Particles with Inherent Antibacterial and Neurotoxicity Properties

The synthesis of nanometer-sized metallic nanoparticles utilizing bio-sources is one of the most cost-effective and ecologically friendly approaches. Nano-zinc oxide particles (N-ZnO Ps) were made using a simple green synthesis method using an aqueous zinc nitrate salt and Perilla frutescens crude p...

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Autores principales: Hou, Tianyu, Sankar Sana, Siva, Li, Huizhen, Wang, Xin, Wang, Qinqin, Boya, Vijaya Kumar Naidu, Vadde, Ramakrishna, Kumar, Raj, Kumbhakar, Divya Vishambhar, Zhang, Zhijun, Mamidi, Narsimha
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9610397/
https://www.ncbi.nlm.nih.gov/pubmed/36297590
http://dx.doi.org/10.3390/pharmaceutics14102155
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author Hou, Tianyu
Sankar Sana, Siva
Li, Huizhen
Wang, Xin
Wang, Qinqin
Boya, Vijaya Kumar Naidu
Vadde, Ramakrishna
Kumar, Raj
Kumbhakar, Divya Vishambhar
Zhang, Zhijun
Mamidi, Narsimha
author_facet Hou, Tianyu
Sankar Sana, Siva
Li, Huizhen
Wang, Xin
Wang, Qinqin
Boya, Vijaya Kumar Naidu
Vadde, Ramakrishna
Kumar, Raj
Kumbhakar, Divya Vishambhar
Zhang, Zhijun
Mamidi, Narsimha
author_sort Hou, Tianyu
collection PubMed
description The synthesis of nanometer-sized metallic nanoparticles utilizing bio-sources is one of the most cost-effective and ecologically friendly approaches. Nano-zinc oxide particles (N-ZnO Ps) were made using a simple green synthesis method using an aqueous zinc nitrate salt and Perilla frutescens crude protein as a protecting and reducing agent in the current work. UV-visible (UV-vis) spectrophotometry, X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), Fourier transform infrared spectroscopy (FT-IR), scanning electron microscopy (SEM), (energy dispersive x-ray spectroscopy) EDX and high-resolution transmission electron microscopy (HR-TEM) were used to characterize the synthesized N-ZnO Ps. A distinctive UV-vis absorption peak was observed at 370 nm due to N-ZnO Ps. The SEM and HR-TEM pictures revealed N-ZnO Ps with a triangular form. The XRD pattern indicated the wurtzite structure of N-ZnO Ps. Nanoparticles exhibited a zeta potential of −11.3 mV. The antibacterial activity of N-ZnO Ps was tested against Escherichia coli (E. coli) and Klebsiella pneumoniae (K. pneumonia) microorganisms. The N-ZnO Ps were non-toxic to HMC-3 human normal brain microglia cells; however, they exhibited a potential cytotoxic effect on the LN-18 human brain glioblastoma cell line. These results indicate that N-ZnOPs can act as promising antibacterial and anticancer treatments in the prevention of Glioblastoma.
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spelling pubmed-96103972022-10-28 Development of Plant Protein Derived Tri Angular Shaped Nano Zinc Oxide Particles with Inherent Antibacterial and Neurotoxicity Properties Hou, Tianyu Sankar Sana, Siva Li, Huizhen Wang, Xin Wang, Qinqin Boya, Vijaya Kumar Naidu Vadde, Ramakrishna Kumar, Raj Kumbhakar, Divya Vishambhar Zhang, Zhijun Mamidi, Narsimha Pharmaceutics Article The synthesis of nanometer-sized metallic nanoparticles utilizing bio-sources is one of the most cost-effective and ecologically friendly approaches. Nano-zinc oxide particles (N-ZnO Ps) were made using a simple green synthesis method using an aqueous zinc nitrate salt and Perilla frutescens crude protein as a protecting and reducing agent in the current work. UV-visible (UV-vis) spectrophotometry, X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), Fourier transform infrared spectroscopy (FT-IR), scanning electron microscopy (SEM), (energy dispersive x-ray spectroscopy) EDX and high-resolution transmission electron microscopy (HR-TEM) were used to characterize the synthesized N-ZnO Ps. A distinctive UV-vis absorption peak was observed at 370 nm due to N-ZnO Ps. The SEM and HR-TEM pictures revealed N-ZnO Ps with a triangular form. The XRD pattern indicated the wurtzite structure of N-ZnO Ps. Nanoparticles exhibited a zeta potential of −11.3 mV. The antibacterial activity of N-ZnO Ps was tested against Escherichia coli (E. coli) and Klebsiella pneumoniae (K. pneumonia) microorganisms. The N-ZnO Ps were non-toxic to HMC-3 human normal brain microglia cells; however, they exhibited a potential cytotoxic effect on the LN-18 human brain glioblastoma cell line. These results indicate that N-ZnOPs can act as promising antibacterial and anticancer treatments in the prevention of Glioblastoma. MDPI 2022-10-10 /pmc/articles/PMC9610397/ /pubmed/36297590 http://dx.doi.org/10.3390/pharmaceutics14102155 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
Hou, Tianyu
Sankar Sana, Siva
Li, Huizhen
Wang, Xin
Wang, Qinqin
Boya, Vijaya Kumar Naidu
Vadde, Ramakrishna
Kumar, Raj
Kumbhakar, Divya Vishambhar
Zhang, Zhijun
Mamidi, Narsimha
Development of Plant Protein Derived Tri Angular Shaped Nano Zinc Oxide Particles with Inherent Antibacterial and Neurotoxicity Properties
title Development of Plant Protein Derived Tri Angular Shaped Nano Zinc Oxide Particles with Inherent Antibacterial and Neurotoxicity Properties
title_full Development of Plant Protein Derived Tri Angular Shaped Nano Zinc Oxide Particles with Inherent Antibacterial and Neurotoxicity Properties
title_fullStr Development of Plant Protein Derived Tri Angular Shaped Nano Zinc Oxide Particles with Inherent Antibacterial and Neurotoxicity Properties
title_full_unstemmed Development of Plant Protein Derived Tri Angular Shaped Nano Zinc Oxide Particles with Inherent Antibacterial and Neurotoxicity Properties
title_short Development of Plant Protein Derived Tri Angular Shaped Nano Zinc Oxide Particles with Inherent Antibacterial and Neurotoxicity Properties
title_sort development of plant protein derived tri angular shaped nano zinc oxide particles with inherent antibacterial and neurotoxicity properties
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9610397/
https://www.ncbi.nlm.nih.gov/pubmed/36297590
http://dx.doi.org/10.3390/pharmaceutics14102155
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