Interactions of Chitosan-coated Green Synthesized Silver Nanoparticles using Mentha spicata and Standard Antibiotics against Bacterial Pathogens

被引:3
作者
Khan, Habib [1 ]
Andleeb, Saiqa [1 ]
Nisar, Tayba [1 ]
Latif, Zahid [1 ]
Raja, Sadaf Azad [2 ]
Awan, Uzma Azeem [3 ]
Maqbool, Kiran [1 ]
Khurshid, Sadia [1 ]
机构
[1] Univ Azad Jammu & Kashmir, Dept Zool, Microbial Biotechnol Lab, King Abdullah Campus, Chattar Kalas 13100, Muzaffarabad, Pakistan
[2] COMSATS Univ, Dept Biosci, Pk Rd, Islamabad 44000, Pakistan
[3] Natl Univ Med Sci NUMS, Dept Biol Sci, Rawalpindi, Pakistan
关键词
Chitosan; silver nanoparticles; Mentha spicata; synergistic effect; agar well diffusion method; standard antibiotics; BIOLOGICAL SYNTHESIS; METAL NANOPARTICLES; CYMODOCEA-SERRULATA; CELL-PROLIFERATION; ESCHERICHIA-COLI; ANTIOXIDANT; ANTIBACTERIAL; EXTRACT; BIOFILM; PLANT;
D O I
10.2174/1389201023666220405120914
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
Background: Infectious diseases are caused by various multidrug-resistant pathogenic bacteria and in recent scenarios, nanoparticles have been used as innovative antimicrobial agents. Aims: This current research aimed to evaluate the bactericidal effect of chitosan-coated green synthesized silver nanoparticles using aqueous extract of Mentha spicata (MSaqu) against bacterial pathogens, i.e., Pseudomonas aeruginosa, Escherichia coli, Klebsiella pneumoniae, Pseudomonas aeruginosa, Serratia marcescens, Staphylococcus aureus, and Streptococcus pyogenes. Methods: Synthesis and characterization of silver nanoparticles (MSAgNPs) were carried out via atomic absorption spectrometer and Fourier-transform infrared spectroscopy. Agar well and agar disc diffusion methods were used to assess the antibacterial and synergistic effect of chitosan-mediated biogenic silver nanoparticles and standard antibiotics. Three types of interactions, i.e., antagonistic (down arrow), synergistic (up arrow), and additive ( yen ) were observed. Results: Synergistic effect was recorded against Pseudomonas aeruginosa (8.5 +/- 0.25 mm up arrow), Serratia marcescens (19.0 +/- 1.0 mm up arrow), and Klebsiela pneumonia (8.5 +/- 0.25 mm up arrow), an additive effect was exhibited by Escherichia coli (9.0 +/- 0.0 mm yen ), Streptococcus pyogenes (10.0 +/- 0.0 mm yen ), and Staphylococcus aureus (7.5 +/- 0.25 mm down arrow) and they showed antagonistic effects when chitosan-coated silver nanoparticles (CLMSAgNPs) were applied compared to chitosan, MSaqu, and MSAgNPs. Interesting antibacterial results were recorded when chitosan-coated Mentha spicata extract and silver nanoparticles were applied along with antibiotics. The synergistic effects of chitosan-coated silver nanoparticles (CLMSAgNPs) + K were recorded against E. coli (14.5 +/- 0.25 mm). The synergistic effects of chitosan-coated silver nanoparticles (CLMSAgNPs) + AML were recorded against E. coli (5.5 +/- 0.0 mm), S. pyogenes (10.0 +/- 0.0 mm), K. pneumonia (5.5 +/- 0.0 mm), and S. aureus (4.0 +/- 0.0 mm). The synergistic effects of chitosan-coated silver nanoparticles (CLMSAgNPs) + NOR were recorded against E. coli (16.0 +/- 0.0 mm), P. aeruginosa (19.0 +/- 0.0 mm), S. marcescens (19.5 +/- 0.25 mm), S. pyogenes (11.5.0 +/- 0.25 mm), K. pneumonia (23.0 +/- 0.0 mm), and S. aureus (8.5 +/- 0.25 mm). Conclusion: Current findings concluded that chitosan-coated biogenic silver nanoparticles have potential bactericidal effects against infectious pathogens and could be used as forthcoming antibacterial agents.
引用
收藏
页码:203 / 212
页数:10
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