Cargando…
Bio-molecule functionalized rapid one-pot green synthesis of silver nanoparticles and their efficacy toward the multidrug resistant (MDR) gut bacteria of silkworms (Bombyx mori)
The present study aimed to synthesise bio-molecule functionalized silver nanoparticles (AgNPs) using leaf extract from mulberry variety S-1635 (Morus alba L.) and to explore its antibacterial efficacy against multidrug resistant (MDR) gut bacteria isolated from natural infection observed from silkwo...
Autores principales: | , , , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
The Royal Society of Chemistry
2020
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9054587/ https://www.ncbi.nlm.nih.gov/pubmed/35514551 http://dx.doi.org/10.1039/d0ra03451g |
_version_ | 1784697223433420800 |
---|---|
author | Some, Sudip Sarkar, Biraj Biswas, Kinkar Jana, Tushar K. Bhattacharjya, Debjoy Dam, Paulami Mondal, Rittick Kumar, Anoop Deb, Apurba K. Sadat, Abdul Saha, Soumen Kati, Ahmet Ocsoy, Ismail Franco, Octavio L. Mandal, Amitava Mandal, Sukhendu Mandal, Amit Kumar İnce, İkbal Agah |
author_facet | Some, Sudip Sarkar, Biraj Biswas, Kinkar Jana, Tushar K. Bhattacharjya, Debjoy Dam, Paulami Mondal, Rittick Kumar, Anoop Deb, Apurba K. Sadat, Abdul Saha, Soumen Kati, Ahmet Ocsoy, Ismail Franco, Octavio L. Mandal, Amitava Mandal, Sukhendu Mandal, Amit Kumar İnce, İkbal Agah |
author_sort | Some, Sudip |
collection | PubMed |
description | The present study aimed to synthesise bio-molecule functionalized silver nanoparticles (AgNPs) using leaf extract from mulberry variety S-1635 (Morus alba L.) and to explore its antibacterial efficacy against multidrug resistant (MDR) gut bacteria isolated from natural infection observed from silkworm larvae in rearing conditions. AgNPs formation was established by surface plasmon resonance at 480 nm. The crystallinity of the synthesised AgNPs was checked by HR-TEM and XRD analysis. SEM and TEM characterisation further exhibited the spherical, monodispersed, well scattered nature of the AgNPs with an average particle size of 11.8 nm ± 2.8. The presence of (111), (200), (220) and (311) planes in Bragg's reflections confirmed the face-cantered-cubic crystalline silver. EDX analysis confirmed the presence of elemental silver. FT-IR spectra revealed functional groups were responsible for the reduction of silver ions. The zeta potential value of −17.3 mV and −25.6 mV was recorded in MH and DMEM/F-12 media, respectively. The LC-QTOF/MS and HRMS spectra disclosed the presence of bioactive compounds like flavonoid, gallic acid, and stigmasterol, which are probably involved in the reduction and functionalization of AgNPs. The antibacterial efficacy of bio-molecule functionalized AgNPs and the naked AgNPs was tested on Gram-positive and Gram-negative bacteria isolated from silkworms and characterized by using 16S rDNA and gyrB genes. The cytotoxicity of AgNPs was tested on WRL-68, HEK-293, ACHN, and HUH-7 cell lines using MTT assay. This study provides an insight into the application of bio-molecule functionalized AgNPs for combating various silkworm pathogens which severely affect the agro-rural economy of developing countries. |
format | Online Article Text |
id | pubmed-9054587 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | The Royal Society of Chemistry |
record_format | MEDLINE/PubMed |
spelling | pubmed-90545872022-05-04 Bio-molecule functionalized rapid one-pot green synthesis of silver nanoparticles and their efficacy toward the multidrug resistant (MDR) gut bacteria of silkworms (Bombyx mori) Some, Sudip Sarkar, Biraj Biswas, Kinkar Jana, Tushar K. Bhattacharjya, Debjoy Dam, Paulami Mondal, Rittick Kumar, Anoop Deb, Apurba K. Sadat, Abdul Saha, Soumen Kati, Ahmet Ocsoy, Ismail Franco, Octavio L. Mandal, Amitava Mandal, Sukhendu Mandal, Amit Kumar İnce, İkbal Agah RSC Adv Chemistry The present study aimed to synthesise bio-molecule functionalized silver nanoparticles (AgNPs) using leaf extract from mulberry variety S-1635 (Morus alba L.) and to explore its antibacterial efficacy against multidrug resistant (MDR) gut bacteria isolated from natural infection observed from silkworm larvae in rearing conditions. AgNPs formation was established by surface plasmon resonance at 480 nm. The crystallinity of the synthesised AgNPs was checked by HR-TEM and XRD analysis. SEM and TEM characterisation further exhibited the spherical, monodispersed, well scattered nature of the AgNPs with an average particle size of 11.8 nm ± 2.8. The presence of (111), (200), (220) and (311) planes in Bragg's reflections confirmed the face-cantered-cubic crystalline silver. EDX analysis confirmed the presence of elemental silver. FT-IR spectra revealed functional groups were responsible for the reduction of silver ions. The zeta potential value of −17.3 mV and −25.6 mV was recorded in MH and DMEM/F-12 media, respectively. The LC-QTOF/MS and HRMS spectra disclosed the presence of bioactive compounds like flavonoid, gallic acid, and stigmasterol, which are probably involved in the reduction and functionalization of AgNPs. The antibacterial efficacy of bio-molecule functionalized AgNPs and the naked AgNPs was tested on Gram-positive and Gram-negative bacteria isolated from silkworms and characterized by using 16S rDNA and gyrB genes. The cytotoxicity of AgNPs was tested on WRL-68, HEK-293, ACHN, and HUH-7 cell lines using MTT assay. This study provides an insight into the application of bio-molecule functionalized AgNPs for combating various silkworm pathogens which severely affect the agro-rural economy of developing countries. The Royal Society of Chemistry 2020-06-15 /pmc/articles/PMC9054587/ /pubmed/35514551 http://dx.doi.org/10.1039/d0ra03451g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/ |
spellingShingle | Chemistry Some, Sudip Sarkar, Biraj Biswas, Kinkar Jana, Tushar K. Bhattacharjya, Debjoy Dam, Paulami Mondal, Rittick Kumar, Anoop Deb, Apurba K. Sadat, Abdul Saha, Soumen Kati, Ahmet Ocsoy, Ismail Franco, Octavio L. Mandal, Amitava Mandal, Sukhendu Mandal, Amit Kumar İnce, İkbal Agah Bio-molecule functionalized rapid one-pot green synthesis of silver nanoparticles and their efficacy toward the multidrug resistant (MDR) gut bacteria of silkworms (Bombyx mori) |
title | Bio-molecule functionalized rapid one-pot green synthesis of silver nanoparticles and their efficacy toward the multidrug resistant (MDR) gut bacteria of silkworms (Bombyx mori) |
title_full | Bio-molecule functionalized rapid one-pot green synthesis of silver nanoparticles and their efficacy toward the multidrug resistant (MDR) gut bacteria of silkworms (Bombyx mori) |
title_fullStr | Bio-molecule functionalized rapid one-pot green synthesis of silver nanoparticles and their efficacy toward the multidrug resistant (MDR) gut bacteria of silkworms (Bombyx mori) |
title_full_unstemmed | Bio-molecule functionalized rapid one-pot green synthesis of silver nanoparticles and their efficacy toward the multidrug resistant (MDR) gut bacteria of silkworms (Bombyx mori) |
title_short | Bio-molecule functionalized rapid one-pot green synthesis of silver nanoparticles and their efficacy toward the multidrug resistant (MDR) gut bacteria of silkworms (Bombyx mori) |
title_sort | bio-molecule functionalized rapid one-pot green synthesis of silver nanoparticles and their efficacy toward the multidrug resistant (mdr) gut bacteria of silkworms (bombyx mori) |
topic | Chemistry |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9054587/ https://www.ncbi.nlm.nih.gov/pubmed/35514551 http://dx.doi.org/10.1039/d0ra03451g |
work_keys_str_mv | AT somesudip biomoleculefunctionalizedrapidonepotgreensynthesisofsilvernanoparticlesandtheirefficacytowardthemultidrugresistantmdrgutbacteriaofsilkwormsbombyxmori AT sarkarbiraj biomoleculefunctionalizedrapidonepotgreensynthesisofsilvernanoparticlesandtheirefficacytowardthemultidrugresistantmdrgutbacteriaofsilkwormsbombyxmori AT biswaskinkar biomoleculefunctionalizedrapidonepotgreensynthesisofsilvernanoparticlesandtheirefficacytowardthemultidrugresistantmdrgutbacteriaofsilkwormsbombyxmori AT janatushark biomoleculefunctionalizedrapidonepotgreensynthesisofsilvernanoparticlesandtheirefficacytowardthemultidrugresistantmdrgutbacteriaofsilkwormsbombyxmori AT bhattacharjyadebjoy biomoleculefunctionalizedrapidonepotgreensynthesisofsilvernanoparticlesandtheirefficacytowardthemultidrugresistantmdrgutbacteriaofsilkwormsbombyxmori AT dampaulami biomoleculefunctionalizedrapidonepotgreensynthesisofsilvernanoparticlesandtheirefficacytowardthemultidrugresistantmdrgutbacteriaofsilkwormsbombyxmori AT mondalrittick biomoleculefunctionalizedrapidonepotgreensynthesisofsilvernanoparticlesandtheirefficacytowardthemultidrugresistantmdrgutbacteriaofsilkwormsbombyxmori AT kumaranoop biomoleculefunctionalizedrapidonepotgreensynthesisofsilvernanoparticlesandtheirefficacytowardthemultidrugresistantmdrgutbacteriaofsilkwormsbombyxmori AT debapurbak biomoleculefunctionalizedrapidonepotgreensynthesisofsilvernanoparticlesandtheirefficacytowardthemultidrugresistantmdrgutbacteriaofsilkwormsbombyxmori AT sadatabdul biomoleculefunctionalizedrapidonepotgreensynthesisofsilvernanoparticlesandtheirefficacytowardthemultidrugresistantmdrgutbacteriaofsilkwormsbombyxmori AT sahasoumen biomoleculefunctionalizedrapidonepotgreensynthesisofsilvernanoparticlesandtheirefficacytowardthemultidrugresistantmdrgutbacteriaofsilkwormsbombyxmori AT katiahmet biomoleculefunctionalizedrapidonepotgreensynthesisofsilvernanoparticlesandtheirefficacytowardthemultidrugresistantmdrgutbacteriaofsilkwormsbombyxmori AT ocsoyismail biomoleculefunctionalizedrapidonepotgreensynthesisofsilvernanoparticlesandtheirefficacytowardthemultidrugresistantmdrgutbacteriaofsilkwormsbombyxmori AT francooctaviol biomoleculefunctionalizedrapidonepotgreensynthesisofsilvernanoparticlesandtheirefficacytowardthemultidrugresistantmdrgutbacteriaofsilkwormsbombyxmori AT mandalamitava biomoleculefunctionalizedrapidonepotgreensynthesisofsilvernanoparticlesandtheirefficacytowardthemultidrugresistantmdrgutbacteriaofsilkwormsbombyxmori AT mandalsukhendu biomoleculefunctionalizedrapidonepotgreensynthesisofsilvernanoparticlesandtheirefficacytowardthemultidrugresistantmdrgutbacteriaofsilkwormsbombyxmori AT mandalamitkumar biomoleculefunctionalizedrapidonepotgreensynthesisofsilvernanoparticlesandtheirefficacytowardthemultidrugresistantmdrgutbacteriaofsilkwormsbombyxmori AT inceikbalagah biomoleculefunctionalizedrapidonepotgreensynthesisofsilvernanoparticlesandtheirefficacytowardthemultidrugresistantmdrgutbacteriaofsilkwormsbombyxmori |