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Flavonoid dihydromyricetin-mediated silver nanoparticles as potential nanomedicine for biomedical treatment of infections caused by opportunistic fungal pathogens

机译:黄酮类二氢肌酐介导的银纳米粒子作为潜在的纳米胺用于生物医学治疗机会性真菌病原体引起的感染

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Dihydromyricetin-mediated silver nanoparticles (DMY-AgNPs) were synthesized and their efficacy against fungal pathogens tested in vitro. The shape of DMY-AgNPs appeared to be spherical with size of similar to 34 nm. Fourier-transform infrared (FT-IR) analysis indicated that -OH and C=O groups were involved in nanoparticle formation. The XRD pattern of DMY-AgNPs showed strong peaks at 38 degrees, 44 degrees, and 64 degrees, corresponding to reflection from (111), (200), and (220) planes. Five opportunistic fungal pathogens, namely Aspergillus fumigatus, Aspergillus niger, Paecilomyces formosus, Candida albicans, and Candida parapsilosis, were isolated from patients suffering from respiratory tract infections. Growth of each fungal strain was inhibited by DMY-AgNPs. The zone of inhibition of DMY-AgNPs against A. fumigatus, A. niger, P. formosus, C. albicans, and C. parapsilosis was 17.6, 19.2, 22.2, 15.8, and 18.5 mm. The minimal inhibitory concentration was found to be 0.83, 0.73, 0.67, 0.95, and 0.89 mu g mL(-1), respectively. This is the first report on DMY-AgNPs as an effective antifungal agent. DMY-AgNPs are a potential alternative to commercially available antifungal fungicidals.
机译:合成二氢肌酐介导的银纳米颗粒(DMY-AGNP),它们对体外测试的真菌病原体的功效。 DMY-AGNP的形状似乎是球形的,尺寸与34nm相似。傅里叶变换红外(FT-IR)分析表明-OH和C = O基团参与纳米颗粒形成。 DMY-AGNP的XRD图案显示为38度,44度和64度的强峰,对应于(111),(200)和(220)平面的反射。患有呼吸道感染的患者分离出五种机会Fumigatus,即Aspergillus fumigatus,aspergillus fumigatus,aspergillus fumigatus,kespergillus尼日尔,睡衣症,念珠菌和念珠菌症。通过DMY-agnps抑制每个真菌菌株的生长。对A. fumigatus,A. niger,P. Formosus,C. albicans和C.Parapsilosis的抑制区。17.6,19.2,22.2,15.8和18.5毫米。发现最小抑制浓度为0.83,0.73,0.67,0.95和0.89μgmm(-1)。这是DMY-AGNPS作为有效抗真菌剂的第一个报告。 DMY-AGNPS是商业上可获得的抗真菌真菌的潜在替代品。

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