Inhibitory effect of Basella alba-Mediated zinc oxide nanoparticles against the infection-causing bacteria

Background: Naturally occurring biomolecules from the plant extract have been identified to play an active role in the formation of any nanoparticles. Methods: This work aimed to synthesize the nano-sized zinc oxide material (zinc oxide nanoparticles [ZnONPs]) using the 70% ethanolic leaf extract of...

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Main Authors: Aranganathan Agila, Gnanasekar Dayana Jeyaleela, Joseph Devaraj Rosaline Vimala, Moses Stella Bharathy, Sagaya Adaikalaraj Margrat Sheela
Format: Article
Language:English
Published: Wolters Kluwer Medknow Publications 2022-01-01
Series:Biomedical and Biotechnology Research Journal
Subjects:
Online Access:http://www.bmbtrj.org/article.asp?issn=2588-9834;year=2022;volume=6;issue=3;spage=353;epage=359;aulast=Agila
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author Aranganathan Agila
Gnanasekar Dayana Jeyaleela
Joseph Devaraj Rosaline Vimala
Moses Stella Bharathy
Sagaya Adaikalaraj Margrat Sheela
author_facet Aranganathan Agila
Gnanasekar Dayana Jeyaleela
Joseph Devaraj Rosaline Vimala
Moses Stella Bharathy
Sagaya Adaikalaraj Margrat Sheela
author_sort Aranganathan Agila
collection DOAJ
description Background: Naturally occurring biomolecules from the plant extract have been identified to play an active role in the formation of any nanoparticles. Methods: This work aimed to synthesize the nano-sized zinc oxide material (zinc oxide nanoparticles [ZnONPs]) using the 70% ethanolic leaf extract of Basella alba by precipitation method and also studied the antibacterial activity of green-synthesized ZnONPs on infection-causing five bacteria. Synthesized nanomaterials were characterized by the aid of ultraviolet (UV)-visible, Fourier transform infrared spectroscopy, scanning electron microscope, X-ray diffraction, and Energy Dispersive X-ray Analysis (EDAX). Results: Qualitative analysis and UV results of extract reveal the occurrence of some medicinally important phytomolecules such as flavonoids, terpenoids, phenolic acids, and ascorbic acid. The spherical nature of ZnONPs was observed with an average crystalline size of 28.64 nm. EDAX analysis revealed the elemental compositions in the B. alba-mediated ZnONPs (BA-ZnONPs) which showed zinc in 70.04% and oxygen in 29.96%. BA-ZnONPs were tested against the bacteria (an infection causing) such as Pseudomonas aeruginosa, Escherichia coli, Enterobacter aerogenes, Staphylococcus aureus, and Proteus vulgaris, which results that, against all the pathogens, ZnONPs showed noticeable inhibition effects compared with zinc acetate and B. alba extract. Especially against the E. coli, ZnONPs performed well with inhibitory effect and least on S. aureus. Conclusion: Antibacterial activities of BA-ZnONPs were studied which can act as the new antimicrobial-resistant agents.
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spelling doaj.art-88ab360359d14d978d17a2d340ed577c2022-12-22T04:13:36ZengWolters Kluwer Medknow PublicationsBiomedical and Biotechnology Research Journal2588-98342588-98422022-01-016335335910.4103/bbrj.bbrj_144_22Inhibitory effect of Basella alba-Mediated zinc oxide nanoparticles against the infection-causing bacteriaAranganathan AgilaGnanasekar Dayana JeyaleelaJoseph Devaraj Rosaline VimalaMoses Stella BharathySagaya Adaikalaraj Margrat SheelaBackground: Naturally occurring biomolecules from the plant extract have been identified to play an active role in the formation of any nanoparticles. Methods: This work aimed to synthesize the nano-sized zinc oxide material (zinc oxide nanoparticles [ZnONPs]) using the 70% ethanolic leaf extract of Basella alba by precipitation method and also studied the antibacterial activity of green-synthesized ZnONPs on infection-causing five bacteria. Synthesized nanomaterials were characterized by the aid of ultraviolet (UV)-visible, Fourier transform infrared spectroscopy, scanning electron microscope, X-ray diffraction, and Energy Dispersive X-ray Analysis (EDAX). Results: Qualitative analysis and UV results of extract reveal the occurrence of some medicinally important phytomolecules such as flavonoids, terpenoids, phenolic acids, and ascorbic acid. The spherical nature of ZnONPs was observed with an average crystalline size of 28.64 nm. EDAX analysis revealed the elemental compositions in the B. alba-mediated ZnONPs (BA-ZnONPs) which showed zinc in 70.04% and oxygen in 29.96%. BA-ZnONPs were tested against the bacteria (an infection causing) such as Pseudomonas aeruginosa, Escherichia coli, Enterobacter aerogenes, Staphylococcus aureus, and Proteus vulgaris, which results that, against all the pathogens, ZnONPs showed noticeable inhibition effects compared with zinc acetate and B. alba extract. Especially against the E. coli, ZnONPs performed well with inhibitory effect and least on S. aureus. Conclusion: Antibacterial activities of BA-ZnONPs were studied which can act as the new antimicrobial-resistant agents.http://www.bmbtrj.org/article.asp?issn=2588-9834;year=2022;volume=6;issue=3;spage=353;epage=359;aulast=Agilaantibacterial activity on infection-causing bacteriabasella alba characterizationgreen synthesis
spellingShingle Aranganathan Agila
Gnanasekar Dayana Jeyaleela
Joseph Devaraj Rosaline Vimala
Moses Stella Bharathy
Sagaya Adaikalaraj Margrat Sheela
Inhibitory effect of Basella alba-Mediated zinc oxide nanoparticles against the infection-causing bacteria
Biomedical and Biotechnology Research Journal
antibacterial activity on infection-causing bacteria
basella alba
characterization
green synthesis
title Inhibitory effect of Basella alba-Mediated zinc oxide nanoparticles against the infection-causing bacteria
title_full Inhibitory effect of Basella alba-Mediated zinc oxide nanoparticles against the infection-causing bacteria
title_fullStr Inhibitory effect of Basella alba-Mediated zinc oxide nanoparticles against the infection-causing bacteria
title_full_unstemmed Inhibitory effect of Basella alba-Mediated zinc oxide nanoparticles against the infection-causing bacteria
title_short Inhibitory effect of Basella alba-Mediated zinc oxide nanoparticles against the infection-causing bacteria
title_sort inhibitory effect of basella alba mediated zinc oxide nanoparticles against the infection causing bacteria
topic antibacterial activity on infection-causing bacteria
basella alba
characterization
green synthesis
url http://www.bmbtrj.org/article.asp?issn=2588-9834;year=2022;volume=6;issue=3;spage=353;epage=359;aulast=Agila
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AT josephdevarajrosalinevimala inhibitoryeffectofbasellaalbamediatedzincoxidenanoparticlesagainsttheinfectioncausingbacteria
AT mosesstellabharathy inhibitoryeffectofbasellaalbamediatedzincoxidenanoparticlesagainsttheinfectioncausingbacteria
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