Biosynthesis novel approach of silver nanoparticles reduced by aerodramus fuciphagus extracts for antibacterial applications

Research on green synthesis methods for silver nanoparticles has significantly risen due to its positive features, such as cost -effectiveness, rapidity, and reduced environmental impact. This study employed an edible bird's nest (EBN), an important economic resource, as the main material for m...

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Main Authors: Nur Fatini Ilyana, Mohamat Johari, Hazrulrizawati, Abd Hamid, Fathima Shahitha, Jahir Hussain, Farah Hanani, Zulkifli
Format: Article
Language:English
Published: Iran University of Science and Technology 2024
Subjects:
Online Access:https://umpir.ump.edu.my/id/eprint/44526/
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author Nur Fatini Ilyana, Mohamat Johari
Hazrulrizawati, Abd Hamid
Fathima Shahitha, Jahir Hussain
Farah Hanani, Zulkifli
author_facet Nur Fatini Ilyana, Mohamat Johari
Hazrulrizawati, Abd Hamid
Fathima Shahitha, Jahir Hussain
Farah Hanani, Zulkifli
author_sort Nur Fatini Ilyana, Mohamat Johari
building UMP Institutional Repository
collection Online Access
description Research on green synthesis methods for silver nanoparticles has significantly risen due to its positive features, such as cost -effectiveness, rapidity, and reduced environmental impact. This study employed an edible bird's nest (EBN), an important economic resource, as the main material for manufacturing silver nanoparticles, utilizing water as the sole solvent. The EBN extract was subjected to metabolite profiling using LC -QTOF-MS in positive mode (ESI+), which identified the presence of lipids, glycosides, peptides, polysaccharides, and disaccharides. The effective production of AgNPs was evidenced by noticeable color changes from translucent to brown upon the addition of silver nitrate to the aqueous EBN extract. Further analysis of these silver nanoparticles was conducted using UV-visible spectroscopy, which identified an absorption peak at 421 nm. Additional characterization was conducted via FESEM, ATR -FTIR spectroscopy, and EDX analysis. The confirmation of the reduction of silver particles was established by the participation of phenolic agents, proteins, and amino acids. The produced nanoparticles had a spherical morphology, with a particle size ranging from 10 to 20 nm. The existence of elemental silver was verified by a prominent and powerful peak at around 3 kilo electron volts (keV) in the energy - dispersive X-ray (EDX) spectrum. The antibacterial efficacy of silver nanoparticles against Escherichia coli and Staphylococcus aureus was assessed using the agar diffusion method to determine their potential.
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spelling ump-445262025-08-28T03:38:48Z https://umpir.ump.edu.my/id/eprint/44526/ Biosynthesis novel approach of silver nanoparticles reduced by aerodramus fuciphagus extracts for antibacterial applications Nur Fatini Ilyana, Mohamat Johari Hazrulrizawati, Abd Hamid Fathima Shahitha, Jahir Hussain Farah Hanani, Zulkifli RS Pharmacy and materia medica TP Chemical technology Research on green synthesis methods for silver nanoparticles has significantly risen due to its positive features, such as cost -effectiveness, rapidity, and reduced environmental impact. This study employed an edible bird's nest (EBN), an important economic resource, as the main material for manufacturing silver nanoparticles, utilizing water as the sole solvent. The EBN extract was subjected to metabolite profiling using LC -QTOF-MS in positive mode (ESI+), which identified the presence of lipids, glycosides, peptides, polysaccharides, and disaccharides. The effective production of AgNPs was evidenced by noticeable color changes from translucent to brown upon the addition of silver nitrate to the aqueous EBN extract. Further analysis of these silver nanoparticles was conducted using UV-visible spectroscopy, which identified an absorption peak at 421 nm. Additional characterization was conducted via FESEM, ATR -FTIR spectroscopy, and EDX analysis. The confirmation of the reduction of silver particles was established by the participation of phenolic agents, proteins, and amino acids. The produced nanoparticles had a spherical morphology, with a particle size ranging from 10 to 20 nm. The existence of elemental silver was verified by a prominent and powerful peak at around 3 kilo electron volts (keV) in the energy - dispersive X-ray (EDX) spectrum. The antibacterial efficacy of silver nanoparticles against Escherichia coli and Staphylococcus aureus was assessed using the agar diffusion method to determine their potential. Iran University of Science and Technology 2024 Article PeerReviewed pdf en cc_by_nc_4 https://umpir.ump.edu.my/id/eprint/44526/1/Biosynthesis%20novel%20approach%20of%20silver%20nanoparticles%20reduced%20by%20aerodramus.pdf Nur Fatini Ilyana, Mohamat Johari and Hazrulrizawati, Abd Hamid and Fathima Shahitha, Jahir Hussain and Farah Hanani, Zulkifli (2024) Biosynthesis novel approach of silver nanoparticles reduced by aerodramus fuciphagus extracts for antibacterial applications. Iranian Journal of Materials Science and Engineering, 21 (2). pp. 1-10. ISSN 1735-0808. (Published) https://doi.org/10.22068/ijmse.3510 https://doi.org/10.22068/ijmse.3510 https://doi.org/10.22068/ijmse.3510
spellingShingle RS Pharmacy and materia medica
TP Chemical technology
Nur Fatini Ilyana, Mohamat Johari
Hazrulrizawati, Abd Hamid
Fathima Shahitha, Jahir Hussain
Farah Hanani, Zulkifli
Biosynthesis novel approach of silver nanoparticles reduced by aerodramus fuciphagus extracts for antibacterial applications
title Biosynthesis novel approach of silver nanoparticles reduced by aerodramus fuciphagus extracts for antibacterial applications
title_full Biosynthesis novel approach of silver nanoparticles reduced by aerodramus fuciphagus extracts for antibacterial applications
title_fullStr Biosynthesis novel approach of silver nanoparticles reduced by aerodramus fuciphagus extracts for antibacterial applications
title_full_unstemmed Biosynthesis novel approach of silver nanoparticles reduced by aerodramus fuciphagus extracts for antibacterial applications
title_short Biosynthesis novel approach of silver nanoparticles reduced by aerodramus fuciphagus extracts for antibacterial applications
title_sort biosynthesis novel approach of silver nanoparticles reduced by aerodramus fuciphagus extracts for antibacterial applications
topic RS Pharmacy and materia medica
TP Chemical technology
url https://umpir.ump.edu.my/id/eprint/44526/
https://umpir.ump.edu.my/id/eprint/44526/
https://umpir.ump.edu.my/id/eprint/44526/