Green synthesis of silver nanoparticles mediated Azadirachta indica extract and study of their characterization, molecular docking, and antibacterial activity

被引:8
作者
Gawai, Ashish A. [1 ,4 ]
Kharat, Amol R. [2 ]
Chorge, Shivani S. [2 ]
Dhawale, Sachin A. [3 ]
机构
[1] Anuradha Coll Pharm, Chikhli, Maharashtra, India
[2] Govt Coll Pharm, Aurangabad, Maharashtra, India
[3] Shreeyash Inst Pharmaceut Educ & Res, Aurangabad, Maharashtra, India
[4] Anuradha Coll Pharm, Dept Pharmaceut Chem, Chikhli 443201, Maharashtra, India
关键词
antibacterial; Azadirachta indica; characterization; green synthesis; molecular docking; silver nanoparticles; BIOSYNTHESIS; BEADS;
D O I
10.1002/jmr.3051
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The green production of silver nanoparticles (AgNPs) produces AgNPs with minimum influence on the environment by using plant components such as alkaloids, carbohydrates, lipids, enzymes, flavonoids, terpenoids, and polyphenols as reducing agents. In the present investigation, Azadirachta indica leaf extract was used to form AgNPs from a 1 mM silver nitrate solution. The plan proved to be incredibly straightforward, cost-effective, and effective. The production of the nanoparticles was observed visually, where the colorless fluid turns into a brown-colored solution. Further research was carried out using x-ray diffraction, Fourier-transform infrared analysis, scanning electron microscopy, and transmission electron microscopy (TEM) in addition to UV-visible spectroscopy. The size range of AgNPs determined by TEM was 10-30 nm. When the diffusion technique was employed to demonstrate the antibacterial effect of AgNPs on various pathogens, the zones of inhibition for Staphylococcus aureus, Bacillus cereus, and Escherichia coli, when 50 g of AgNPs were used were 16, 12, and 17 mm, respectively. By examining the leakage of reducing sugars and proteins, the mechanism by which nanoparticle antibacterial properties were explored, showed that AgNPs were capable of lowering membrane permeability.
引用
收藏
页数:8
相关论文
共 41 条
[1]   Silver Nanoparticle Entrapped Calcium-Alginate Beads for Fe(II) Removal via Adsorption [J].
Asthana, Anupama ;
Verma, Renu ;
Singh, Ajaya Kumar ;
Susan, Md. Abu Bin Hasan ;
Adhikari, Rameshwar .
MACROMOLECULAR SYMPOSIA, 2016, 366 (01) :42-51
[2]   Green synthesis and characterization of silver nanoparticles using aqueous petal extract of the medicinal plant Combretum indicum [J].
Bahuguna, Gaurav ;
Kumar, Amit ;
Mishra, Neeraj K. ;
Kumar, Chitresh ;
Bahlwal, Aseema ;
Chaudhary, Pratibha ;
Singh, Rajeev .
MATERIALS RESEARCH EXPRESS, 2016, 3 (07)
[3]   Ozone treatment inactivates common bacteria and fungi associated with selected crop seeds and ornamental bulbs [J].
Cetinkaya, Nedim ;
Pazarlar, Sercan ;
Paylan, Ismail Can .
SAUDI JOURNAL OF BIOLOGICAL SCIENCES, 2022, 29 (12)
[4]   Silver-nano biohybride material: Synthesis, characterization and application in water purification [J].
Das, Sujoy K. ;
Khan, Md. Motiar R. ;
Guha, Arun K. ;
Das, Akhil R. ;
Mandal, Asit Baran .
BIORESOURCE TECHNOLOGY, 2012, 124 :495-499
[5]  
Dhawale SS., 2022, INT J PHARM PHARM SC, V14, P25, DOI [10.22159/ijpps.2022v14i11.45816, DOI 10.22159/IJPPS.2022V14I11.45816, https://doi.org/10.22159/ijpps.2022v14i11.45816]
[6]   Effect of Tectona grandis on phenylhydrazine-induced anaemia in rats [J].
Diallo, Aboudoulatif ;
Gbeassor, Messanvi ;
Vovor, Ahoefa ;
Eklu-Gadegbeku, Kwashie ;
Aklikokou, Kodjo ;
Agbonon, Amegnona ;
Abena, Ange A. ;
de Souza, Comla ;
Akpagana, Koffi .
FITOTERAPIA, 2008, 79 (05) :332-336
[7]  
Feng QL, 2000, J BIOMED MATER RES, V52, P662, DOI 10.1002/1097-4636(20001215)52:4<662::AID-JBM10>3.0.CO
[8]  
2-3
[9]  
Gawai AA., 2011, INT J RES PHARM BIOM, V2, P410
[10]  
Guzman M.G., 2009, INT J CHEM BIOL ENG, V2, P104