Green Synthesis of Silver Nanoparticles Using Salvadora persica and Caccinia macranthera Extracts: Cytotoxicity Analysis and Antimicrobial Activity Against Antibiotic-Resistant Bacteria

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作者
Roshanak Khojasteh-Taheri
Ahmad Ghasemi
Zahra Meshkat
Zahra Sabouri
Mahnaz Mohtashami
Majid Darroudi
机构
[1] Mashhad University of Medical Sciences,Antimicrobial Resistance Center
[2] Neyshabur University of Medical Sciences,Healthy Ageing Research Centre
[3] Mashhad University of Medical Sciences,Applied Biomedical Research Center
[4] Neyshabur Islamic Azad University of Sciences,Department of Microbiology
[5] Neyshabur University of Medical Sciences,Department of Basic Medical Sciences
[6] Mashhad University of Medical Sciences,Nuclear Medicine Research Center
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Silver nanoparticles; Cytotoxicity; Antimicrobial effect; Green synthesis; Antibiotic-resistant bacteria;
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摘要
Silver nanoparticles (AgNPs) have gained great interest because of their specific and distinct properties. Chemically synthesized AgNPs (cAgNPs) are often unsuitable for medical applications due to requiring toxic and hazardous solvents. Thus, green synthesis of AgNPs (gAgNPs) using safe and nontoxic substances has attracted particular focus. The current study investigated the potential of Salvadora persica and Caccinia macranthera extracts in the synthesis of CmNPs and SpNPs, respectively. Aqueous extracts of Salvadora persica and Caccinia macranthera were prepared and taken as reducing and stabilizing agents through gAgNPs synthesis. The antimicrobial effects of gAgNPs against susceptible and antibiotic-resistant bacterial strains and their toxicity effects on L929 fibroblast normal cells were evaluated. TEM images and particle size distribution analysis showed that the CmNPs and SpNPs have average sizes of 14.8 nm and 39.4 nm, respectively. The XRD confirms the crystalline nature and purity of both CmNPs and SpNPs. FTIR results demonstrate the involvement of the biologically active substances of both plant extracts in the green synthesis of AgNPs. According to MIC and MBC results, higher antimicrobial effects were seen for CmNPs with a smaller size than SpNPs. In addition, CmNPs and SpNPs were much less cytotoxic when examined against a normal cell relative to cAgNPs. Based on high efficacy in controlling antibiotic-resistant pathogens without detrimental adverse effects, CmNPs may have the capacity to be used in medicine as imaging, drug carrier, and antibacterial and anticancer agents.
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页码:5120 / 5135
页数:15
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