Microwave-Assisted Rapid Green Synthesis of Gold Nanoparticles Using Seed Extract of <i>Trachyspermum ammi</i>: ROS Mediated Biofilm Inhibition and Anticancer Activity

Green synthesis of metal nanoparticles using plant extracts as capping and reducing agents for the biomedical applications has received considerable attention. Moreover, emergence and spread of multidrug resistance among bacterial pathogens has become a major health concern and lookout for novel alt...

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Main Authors: Kahkashan Perveen, Fohad Mabood Husain, Faizan Abul Qais, Altaf Khan, Suhail Razak, Tayyaba Afsar, Pravej Alam, Ali M. Almajwal, Mahmoud M. A. Abulmeaty
Format: Article
Language:English
Published: MDPI AG 2021-01-01
Series:Biomolecules
Subjects:
Online Access:https://www.mdpi.com/2218-273X/11/2/197
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spelling doaj-e3e7ef8b979942bbbbcbacce5d52aabd2021-01-31T00:04:48ZengMDPI AGBiomolecules2218-273X2021-01-011119719710.3390/biom11020197Microwave-Assisted Rapid Green Synthesis of Gold Nanoparticles Using Seed Extract of <i>Trachyspermum ammi</i>: ROS Mediated Biofilm Inhibition and Anticancer ActivityKahkashan Perveen0Fohad Mabood Husain1Faizan Abul Qais2Altaf Khan3Suhail Razak4Tayyaba Afsar5Pravej Alam6Ali M. Almajwal7Mahmoud M. A. Abulmeaty8Department of Botany and Microbiology, College of Science, King Saud University, 2460, Riyadh 11451, Saudi ArabiaDepartment of Food Science and Nutrition, College of Food and Agriculture Sciences, King Saud University, 2460, Riyadh 11451, Saudi ArabiaDepartment of Ag. Microbiology, Aligarh Muslim University, Aligarh 202002, IndiaCentral Laboratory, Department of Pharmacology and Toxicology, College of Pharmacy, King Saud University, 2460, Riyadh 11451, Saudi ArabiaDepartment of Biology, College of Science and Humanities, Prince Sattam bin Abdulaziz University, Alkharj 11942, Saudi ArabiaDepartment of Biology, College of Science and Humanities, Prince Sattam bin Abdulaziz University, Alkharj 11942, Saudi ArabiaDepartment of Community Health Sciences, College of Applied Medical Sciences, King Saud University, 2460, Riyadh 11451, Saudi ArabiaDepartment of Biology, College of Science and Humanities, Prince Sattam bin Abdulaziz University, Alkharj 11942, Saudi ArabiaDepartment of Biology, College of Science and Humanities, Prince Sattam bin Abdulaziz University, Alkharj 11942, Saudi ArabiaGreen synthesis of metal nanoparticles using plant extracts as capping and reducing agents for the biomedical applications has received considerable attention. Moreover, emergence and spread of multidrug resistance among bacterial pathogens has become a major health concern and lookout for novel alternative effective drugs has gained momentum. In current study, we synthesized gold nanoparticles using the seed extract of <i>Trachyspermum ammi</i> (TA-AuNPs), assessed its efficacy against drug resistant biofilms of <i>Listeria monocytogenes</i> and <i>Serratia marcescens</i>, and evaluated its anticancer potential against HepG2 cancer cell lines. Microwave-assisted green synthesis of gold nanoparticles was carried out and characterization was done using UV-vis spectroscopy, X-ray diffraction (XRD), transmission electron microscopy (TEM), and dynamic light scattering (DLS). Most nanoparticles were observed as spherical and spheroidal with few anisotropies with an average crystalline size of 16.63 nm. Synthesized TA-AuNPs demonstrated significant biofilm inhibitory activity against <i>L. monocytogenes</i> (73%) as well as <i>S. marcescens</i> (81%). Exopolysaccharide (EPS), motility, and CSH, key elements that facilitate the formation and maintenance of biofilm were also inhibited significantly at the tested sub-minimum inhibitory concentrations (sub-MICs). Further, TA-AuNPs effectively obliterated preformed mature biofilms of <i>S. marcescens</i> and <i>L. monocytogenes</i> by 64% and 58%, respectively. Induction of intracellular ROS production in TA-AuNPs treated bacterial cells could be the plausible mechanism for the reduced biofilm formation in test pathogens. Administration of TA-AuNPs resulted in the arrest of cellular proliferation in a concentration-dependent manner. TA-AuNPs decrease the intracellular GSH in HepG2 cancer cell lines, cells become more prone to ROS generation, hence induce apoptosis. Thus, this work proposes a new eco-friendly and rapid approach for fabricating NPs which can be exploited for multifarious biomedical applications.https://www.mdpi.com/2218-273X/11/2/197gold nanoparticlesgreen synthesis<i>Trachyspermum ammi</i>antibiofilmanticancerHepG2 cell lines
collection DOAJ
language English
format Article
sources DOAJ
author Kahkashan Perveen
Fohad Mabood Husain
Faizan Abul Qais
Altaf Khan
Suhail Razak
Tayyaba Afsar
Pravej Alam
Ali M. Almajwal
Mahmoud M. A. Abulmeaty
spellingShingle Kahkashan Perveen
Fohad Mabood Husain
Faizan Abul Qais
Altaf Khan
Suhail Razak
Tayyaba Afsar
Pravej Alam
Ali M. Almajwal
Mahmoud M. A. Abulmeaty
Microwave-Assisted Rapid Green Synthesis of Gold Nanoparticles Using Seed Extract of <i>Trachyspermum ammi</i>: ROS Mediated Biofilm Inhibition and Anticancer Activity
Biomolecules
gold nanoparticles
green synthesis
<i>Trachyspermum ammi</i>
antibiofilm
anticancer
HepG2 cell lines
author_facet Kahkashan Perveen
Fohad Mabood Husain
Faizan Abul Qais
Altaf Khan
Suhail Razak
Tayyaba Afsar
Pravej Alam
Ali M. Almajwal
Mahmoud M. A. Abulmeaty
author_sort Kahkashan Perveen
title Microwave-Assisted Rapid Green Synthesis of Gold Nanoparticles Using Seed Extract of <i>Trachyspermum ammi</i>: ROS Mediated Biofilm Inhibition and Anticancer Activity
title_short Microwave-Assisted Rapid Green Synthesis of Gold Nanoparticles Using Seed Extract of <i>Trachyspermum ammi</i>: ROS Mediated Biofilm Inhibition and Anticancer Activity
title_full Microwave-Assisted Rapid Green Synthesis of Gold Nanoparticles Using Seed Extract of <i>Trachyspermum ammi</i>: ROS Mediated Biofilm Inhibition and Anticancer Activity
title_fullStr Microwave-Assisted Rapid Green Synthesis of Gold Nanoparticles Using Seed Extract of <i>Trachyspermum ammi</i>: ROS Mediated Biofilm Inhibition and Anticancer Activity
title_full_unstemmed Microwave-Assisted Rapid Green Synthesis of Gold Nanoparticles Using Seed Extract of <i>Trachyspermum ammi</i>: ROS Mediated Biofilm Inhibition and Anticancer Activity
title_sort microwave-assisted rapid green synthesis of gold nanoparticles using seed extract of <i>trachyspermum ammi</i>: ros mediated biofilm inhibition and anticancer activity
publisher MDPI AG
series Biomolecules
issn 2218-273X
publishDate 2021-01-01
description Green synthesis of metal nanoparticles using plant extracts as capping and reducing agents for the biomedical applications has received considerable attention. Moreover, emergence and spread of multidrug resistance among bacterial pathogens has become a major health concern and lookout for novel alternative effective drugs has gained momentum. In current study, we synthesized gold nanoparticles using the seed extract of <i>Trachyspermum ammi</i> (TA-AuNPs), assessed its efficacy against drug resistant biofilms of <i>Listeria monocytogenes</i> and <i>Serratia marcescens</i>, and evaluated its anticancer potential against HepG2 cancer cell lines. Microwave-assisted green synthesis of gold nanoparticles was carried out and characterization was done using UV-vis spectroscopy, X-ray diffraction (XRD), transmission electron microscopy (TEM), and dynamic light scattering (DLS). Most nanoparticles were observed as spherical and spheroidal with few anisotropies with an average crystalline size of 16.63 nm. Synthesized TA-AuNPs demonstrated significant biofilm inhibitory activity against <i>L. monocytogenes</i> (73%) as well as <i>S. marcescens</i> (81%). Exopolysaccharide (EPS), motility, and CSH, key elements that facilitate the formation and maintenance of biofilm were also inhibited significantly at the tested sub-minimum inhibitory concentrations (sub-MICs). Further, TA-AuNPs effectively obliterated preformed mature biofilms of <i>S. marcescens</i> and <i>L. monocytogenes</i> by 64% and 58%, respectively. Induction of intracellular ROS production in TA-AuNPs treated bacterial cells could be the plausible mechanism for the reduced biofilm formation in test pathogens. Administration of TA-AuNPs resulted in the arrest of cellular proliferation in a concentration-dependent manner. TA-AuNPs decrease the intracellular GSH in HepG2 cancer cell lines, cells become more prone to ROS generation, hence induce apoptosis. Thus, this work proposes a new eco-friendly and rapid approach for fabricating NPs which can be exploited for multifarious biomedical applications.
topic gold nanoparticles
green synthesis
<i>Trachyspermum ammi</i>
antibiofilm
anticancer
HepG2 cell lines
url https://www.mdpi.com/2218-273X/11/2/197
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