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Effective Inhibition of Candidiasis Using an Eco-Friendly Leaf Extract of Calotropis-gigantean-Mediated Silver Nanoparticles

机译:有效的抑制念珠菌病使用Caltroptropis-giganantean介导的银纳米颗粒的生态友好叶提取物。

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摘要

The approaches used for the green biosynthesis of nanoparticles with clinical applications have been widely used in nanotechnology due to their potential to provide safe, eco-friendly, cost effective, high-stability, and high-loading-capacity nanoparticles. This study aimed to evaluate the anti-candidal activity of silver nanoparticles (AgNPs) biosynthesized using the aqueous leaf extract of (CG) alone or in a combination with the plant extract of CG (AgNPs/CG). AgNPs were characterized using UV-Vis spectrophotometry, Fourier transform infrared spectroscopy (FTIR), transmission electron microscopy (TEM), and X-ray diffraction (XRD). The results of the standard disk diffusion method revealed that AgNPs alone displayed anti-candidal activity (11.33-mm inhibition zone), while AgNPs/CG displayed a strong synergistic anti-candidal activity (17.76-mm inhibition zone). Similarly, AgNPs/CG completely inhibited the growth of after 4 h of incubation, as measured using the time-kill assay. In addition, AgNPs/CG inhibited the dimorphic transition of and suppressed both the adhesion and the biofilm formation of by 41% and 38%, respectively. The treatment of with AgNPs/CG showed a significant inhibition of the production of several antioxidant enzymes. Interestingly, AgNPs/CG did not show any cytotoxicity in animal cells, including the MCF-7 cell line and primary mouse bone marrow-derived mesenchymal stem cells (mBMSCs), at the concentration used to completely inhibit the dimorphic transition of . In conclusion, we identified AgNPs/CG as a promising natural-product-based nanoparticle that can potentially be used as an anti-candidal drug.
机译:用于绿色生物合成纳米颗粒的临床应用方法具有广泛的临床应用价值,因为它们具有提供安全,环保,成本效益,高稳定性和高承载能力的纳米颗粒的潜力。这项研究旨在评估单独使用(CG)的水叶提取物或与CG的植物提取物(AgNPs / CG)组合使用生物合成的银纳米颗粒(AgNPs)的抗candidal活性。 AgNPs使用紫外可见分光光度法,傅立叶变换红外光谱(FTIR),透射电子显微镜(TEM)和X射线衍射(XRD)进行表征。标准圆盘扩散法的结果表明,单独的AgNPs表现出抗候选活性(11.33 mm抑制区),而AgNPs / CG则显示出较强的协同抗候选活性(17.76 mm抑制区)。同样,使用时间杀灭测定法,AgNPs / CG完全抑制了孵育4小时后的生长。此外,AgNPs / CG分别抑制的二态性转变和抑制粘附力和生物膜形成分别达41%和38%。用AgNPs / CG处理显示出显着抑制几种抗氧化酶的产生。有趣的是,AgNPs / CG对动物细胞(包括MCF-7细胞系和原代小鼠骨髓间充质干细胞(mBMSC))没有显示任何细胞毒性,其浓度完全抑制了其双态性。总之,我们确定了AgNPs / CG是一种有前途的基于天然产物的纳米粒子,可以潜在地用作抗候选药物。

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