Nanohybrid of Thymol and 2D Simonkolleite Enhances Inhibition of Bacterial Growth, Biofilm Formation, and Free Radicals

被引:12
作者
Velazquez-Carriles, Carlos [1 ]
Esther Macias-Rodriguez, Maria [1 ]
Ramirez-Alvarado, Omar [1 ]
Isela Corona-Gonzalez, Rosa [2 ]
Macias-Lamas, Adriana [1 ]
Garcia-Vera, Ismael [1 ]
Cavazos-Garduno, Adriana [1 ]
Villagran, Zuami [3 ]
Manuel Silva-Jara, Jorge [1 ]
机构
[1] Univ Guadalajara, Ctr Univ Ciencias Exactas & Ingn, Dept Farmacobiol, Blvd Marcelino Garcia Barragan 1421, Guadalajara 44430, Jalisco, Mexico
[2] Univ Guadalajara, Ctr Univ Ciencias Exactas & Ingn, Dept Ingn Quim, Blvd Marcelino Garcia Barragan 1421, Guadalajara 44430, Jalisco, Mexico
[3] Univ Guadalajara, Ctr Univ Los Altos, Dept Ciencias Salud, Av Rafael Casillas Aceves 1200, Tepatitlan De Morelos 47600, Mexico
关键词
terpenes; layered hydroxide salt; antimicrobial activity; biofilm-formation inhibition; antioxidant capacity; LAYERED DOUBLE HYDROXIDE; WATER; ANTIBACTERIAL; ADSORPTION; PARAMETERS; MECHANISM; CARVACROL; SURFACE; SALTS;
D O I
10.3390/molecules27196161
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
Due to the current concerns against opportunistic pathogens and the challenge of antimicrobial resistance worldwide, alternatives to control pathogen growth are required. In this sense, this work offers a new nanohybrid composed of zinc-layered hydroxide salt (Simonkolleite) and thymol for preventing bacterial growth. Materials were characterized with XRD diffraction, FTIR and UV-Vis spectra, SEM microscopy, and dynamic light scattering. It was confirmed that the Simonkolleite structure was obtained, and thymol was adsorbed on the hydroxide in a web-like manner, with a concentration of 0.863 mg thymol/mg of ZnLHS. Absorption kinetics was described with non-linear models, and a pseudo-second-order equation was the best fit. The antibacterial test was conducted against Escherichia coli O157:H7 and Staphylococcus aureus strains, producing inhibition halos of 21 and 24 mm, respectively, with a 10 mg/mL solution of thymol-ZnLHS. Moreover, biofilm formation of Pseudomonas aeruginosa inhibition was tested, with over 90% inhibition. Nanohybrids exhibited antioxidant activity with ABTS and DPPH evaluations, confirming the presence of the biomolecule in the inorganic matrix. These results can be used to develop a thymol protection vehicle for applications in food, pharmaceutics, odontology, or biomedical industries.
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页数:17
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