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Superfast Synthesis of Stabilized Silver Nanoparticles Using Aqueous Allium sativum (Garlic) Extract and Isoniazid Hydrazide Conjugates: Molecular Docking and In-Vitro Characterizations
by
Vijaya, Rajendran
, Ahmad, Fazil
, Mohamed, Jamal Moideen Muthu
, Krishnaraju, Venkatesan
, Menaa, Farid
, Alqahtani, Taha
, Alamri, Ali
, Fatease, Adel Al
, Muthumani, Ranjini
, Alqahtani, Ali
, Kumar, Thankakan Vimala Ajay
in
Antitubercular Agents - chemistry
/ Antitubercular Agents - pharmacology
/ Binding Sites
/ Chemistry Techniques, Synthetic
/ Drug Stability
/ Garlic
/ Garlic - chemistry
/ garlic extract
/ Green Chemistry Technology
/ green synthesis
/ Hydrazines - chemistry
/ Isoniazid - chemical synthesis
/ Isoniazid - chemistry
/ Isoniazid - pharmacology
/ isoniazid hydrazide
/ Ligands
/ Metal Nanoparticles - chemistry
/ Metal Nanoparticles - ultrastructure
/ molecular docking
/ Molecular Docking Simulation
/ Molecular Dynamics Simulation
/ nanoconjugates
/ Nanoparticles
/ Phytochemicals - chemistry
/ Phytochemicals - pharmacology
/ Plant Extracts - chemistry
/ Protein Binding
/ Proteins
/ Silver
/ Silver - chemistry
/ silver nanoparticles
/ Spectrum Analysis
/ Structure-Activity Relationship
/ Tuberculosis
/ Vibration
2021
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Superfast Synthesis of Stabilized Silver Nanoparticles Using Aqueous Allium sativum (Garlic) Extract and Isoniazid Hydrazide Conjugates: Molecular Docking and In-Vitro Characterizations
by
Vijaya, Rajendran
, Ahmad, Fazil
, Mohamed, Jamal Moideen Muthu
, Krishnaraju, Venkatesan
, Menaa, Farid
, Alqahtani, Taha
, Alamri, Ali
, Fatease, Adel Al
, Muthumani, Ranjini
, Alqahtani, Ali
, Kumar, Thankakan Vimala Ajay
in
Antitubercular Agents - chemistry
/ Antitubercular Agents - pharmacology
/ Binding Sites
/ Chemistry Techniques, Synthetic
/ Drug Stability
/ Garlic
/ Garlic - chemistry
/ garlic extract
/ Green Chemistry Technology
/ green synthesis
/ Hydrazines - chemistry
/ Isoniazid - chemical synthesis
/ Isoniazid - chemistry
/ Isoniazid - pharmacology
/ isoniazid hydrazide
/ Ligands
/ Metal Nanoparticles - chemistry
/ Metal Nanoparticles - ultrastructure
/ molecular docking
/ Molecular Docking Simulation
/ Molecular Dynamics Simulation
/ nanoconjugates
/ Nanoparticles
/ Phytochemicals - chemistry
/ Phytochemicals - pharmacology
/ Plant Extracts - chemistry
/ Protein Binding
/ Proteins
/ Silver
/ Silver - chemistry
/ silver nanoparticles
/ Spectrum Analysis
/ Structure-Activity Relationship
/ Tuberculosis
/ Vibration
2021
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Superfast Synthesis of Stabilized Silver Nanoparticles Using Aqueous Allium sativum (Garlic) Extract and Isoniazid Hydrazide Conjugates: Molecular Docking and In-Vitro Characterizations
by
Vijaya, Rajendran
, Ahmad, Fazil
, Mohamed, Jamal Moideen Muthu
, Krishnaraju, Venkatesan
, Menaa, Farid
, Alqahtani, Taha
, Alamri, Ali
, Fatease, Adel Al
, Muthumani, Ranjini
, Alqahtani, Ali
, Kumar, Thankakan Vimala Ajay
in
Antitubercular Agents - chemistry
/ Antitubercular Agents - pharmacology
/ Binding Sites
/ Chemistry Techniques, Synthetic
/ Drug Stability
/ Garlic
/ Garlic - chemistry
/ garlic extract
/ Green Chemistry Technology
/ green synthesis
/ Hydrazines - chemistry
/ Isoniazid - chemical synthesis
/ Isoniazid - chemistry
/ Isoniazid - pharmacology
/ isoniazid hydrazide
/ Ligands
/ Metal Nanoparticles - chemistry
/ Metal Nanoparticles - ultrastructure
/ molecular docking
/ Molecular Docking Simulation
/ Molecular Dynamics Simulation
/ nanoconjugates
/ Nanoparticles
/ Phytochemicals - chemistry
/ Phytochemicals - pharmacology
/ Plant Extracts - chemistry
/ Protein Binding
/ Proteins
/ Silver
/ Silver - chemistry
/ silver nanoparticles
/ Spectrum Analysis
/ Structure-Activity Relationship
/ Tuberculosis
/ Vibration
2021
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Superfast Synthesis of Stabilized Silver Nanoparticles Using Aqueous Allium sativum (Garlic) Extract and Isoniazid Hydrazide Conjugates: Molecular Docking and In-Vitro Characterizations
Journal Article
Superfast Synthesis of Stabilized Silver Nanoparticles Using Aqueous Allium sativum (Garlic) Extract and Isoniazid Hydrazide Conjugates: Molecular Docking and In-Vitro Characterizations
2021
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Overview
Green synthesis of silver nanoparticles (AgNPs) was synthesized from fresh garlic extract coupled with isoniazid hydrazide (INH), a commonly used antibiotic to treat tuberculosis. A molecular docking study conducted with the selected compounds compared with anthranilate phosphoribosyltransferase (trpD) from Mycobacterium tuberculosis. The aqueous extract of garlic was prepared and mixed with silver nitrate (AgNO3) solution for the superfast synthesis of stable AgNPs. INH was then conjugated with AgNPs at different ratios (v/v) to obtain stable INH-AgNPs conjugates (AgNCs). The resulting AgNCs characterized by FTIR spectra revealed the ultrafast formation of AgNPs (<5 s) and perfectly conjugated with INH. The shifting of λmax to longer wavelength, as found from UV spectral analysis, confirmed the formation of AgNCs, among which ideal formulations (F7, F10, and F13) have been pre-selected. The zeta particle size (PS) and the zeta potential (ZP) of AgNPs were found to be 145.3 ± 2.1 nm and −33.1 mV, respectively. These data were significantly different compared to that of AgNCs (160 ± 2.7 nm and −14.4 mV for F7; 208.9 ± 2.9 nm and −19.8 mV for F10; and 281.3 ± 3.6 nm and −19.5 mV for F13), most probably due to INH conjugation. The results of XRD, SEM and EDX confirmed the formation of AgNCs. From UV spectral analysis, EE of INH as 51.6 ± 5.21, 53.6 ± 6.88, and 70.01 ± 7.11 %, for F7, F10, and F13, respectively. The stability of the three formulations was confirmed in various physiological conditions. Drug was released in a sustainable fashion. Besides, from the preferred 23 compounds, five compounds namely Sativoside R2, Degalactotigonin, Proto-desgalactotigonin, Eruboside B and Sativoside R1 showed a better docking score than trpD, and therefore may help in promoting anti-tubercular activity.
Publisher
MDPI AG,MDPI
Subject
Antitubercular Agents - chemistry
/ Antitubercular Agents - pharmacology
/ Chemistry Techniques, Synthetic
/ Garlic
/ Isoniazid - chemical synthesis
/ Ligands
/ Metal Nanoparticles - chemistry
/ Metal Nanoparticles - ultrastructure
/ Molecular Docking Simulation
/ Molecular Dynamics Simulation
/ Phytochemicals - pharmacology
/ Proteins
/ Silver
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