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Enhanced antifungal efficacy of tebuconazole using gated pH-driven mesoporous nanoparticles.


ABSTRACT: pH-sensitive gated mesoporous silica nanoparticles have been synthesized. Increased extracellular pH and internalization into living yeast cells triggered molecular gate aperture and cargo release. Proper performance of the system was demonstrated with nanodevices loaded with fluorescein or with the antifungal agent tebuconazole. Interestingly, nanodevices loaded with tebuconazole significantly enhanced tebuconazole cytotoxicity. As alterations of acidic external pH are a key parameter in the onset of fungal vaginitis, this nanodevice could improve the treatment for vaginal mycoses.

SUBMITTER: Mas N 

PROVIDER: S-EPMC4043724 | biostudies-literature | 2014

REPOSITORIES: biostudies-literature

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Enhanced antifungal efficacy of tebuconazole using gated pH-driven mesoporous nanoparticles.

Mas Núria N   Galiana Irene I   Hurtado Silvia S   Mondragón Laura L   Bernardos Andrea A   Sancenón Félix F   Marcos María D MD   Amorós Pedro P   Abril-Utrillas Nuria N   Martínez-Máñez Ramón R   Murguía José Ramón JR  

International journal of nanomedicine 20140523


pH-sensitive gated mesoporous silica nanoparticles have been synthesized. Increased extracellular pH and internalization into living yeast cells triggered molecular gate aperture and cargo release. Proper performance of the system was demonstrated with nanodevices loaded with fluorescein or with the antifungal agent tebuconazole. Interestingly, nanodevices loaded with tebuconazole significantly enhanced tebuconazole cytotoxicity. As alterations of acidic external pH are a key parameter in the on  ...[more]

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