Antimycotic activity of zinc oxide decorated with silver nanoparticles against Trichophyton mentagrophytes

被引:15
|
作者
Patino-Herrera, Rosalba [1 ,2 ]
Catarino-Centeno, R. [3 ]
Robles-Martinez, Marissa [2 ]
Moctezuma Zarate, Maria Guadalupe [4 ]
Flores-Arriaga, J. C. [2 ]
Perez, Elias [2 ,5 ]
机构
[1] Tecnol Natl Mexico, Inst Tecnol Celaya, Dept Ingn Quim, Av Tecnol & Antonio Garcia Cubas S-N, Celaya 38010, Guanajuato, Mexico
[2] UASLP, Ingn & Ciencia Mat, Sierra Leona 530, San Luis Potosi 78210, Slp, Mexico
[3] UASLP, Fac Ciencias, Alvaro Obregon 64, San Luis Potosi 78000, Slp, Mexico
[4] UASLP, Fac Ciencias Quim, Alvaro Obregon 64, San Luis Potosi 78000, Slp, Mexico
[5] UASLP, Inst Fis, Alvaro Obregon 64, San Luis Potosi 78000, Slp, Mexico
关键词
ZnO-AgNPs; Antymicotic activity; Trichophyton mentagrophytes; Biofilm; Hydrophobic systems; ANTIBACTERIAL ACTIVITY; SURFACE-PROPERTIES; ESCHERICHIA-COLI; ZNO NANOPOWDERS; ONYCHOMYCOSIS; MECHANISM; NANOCOMPOSITE; CYTOTOXICITY; BACTERIA; NANORODS;
D O I
10.1016/j.powtec.2018.01.004
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Antimycotic behavior of zinc oxide decorated with silver nanoparticles (ZnO-AgNPs) against Trichophyton mentagrophytes (T. mentagrophytes) was investigated on this work. Silver decoration size was modulated during Ag2O and Ag-0 synthesis in aqueous solution at pH 11,12 and 14, obtaining the smallest size at pH 12 and the largest at pH 14. In ex-situ tests, ZnO-AgNPs prevents successfully the growth of T. mentagrophytes, the percent mycelial inhibition (PMI) of formula F12 was 91.76% while formulas F12 and F14 was 100%, they also not present toxicity in cell viability, even the formula F12 promoted cell growth. Additionally, once T. mentagrophytes has grown it turns in a hydrophobic biofilm, whose water contact angle (WCA) was 127 +/- 3 degrees, showing that no aqueous solution will have antimycotic activity against T. mentagrophytes biofilm. It has been propose a ZnO-AgNPs suspension in a hydrophobic fluid (polydimethylsiloxane, PDMS) that allowed to the particles permeate and permitted a direct contact with the biofilm, which was eliminated successfully. These results suggest that ZnO-AgNPs in a hydrophobic fluid emerge as a viable alternative for fungal infections treatment. (C) 2018 Elsevier B.V. All rights reserved.
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页码:381 / 391
页数:11
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