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Evento

Mesoporous titania coating: determination of its physicochemical properties and yeast behavior

Morcillo, Marina Florencia; Tuttolomondo, María VictoriaIcon ; Catalano, Paolo NicolásIcon ; Bellino, Martin GonzaloIcon ; Soler Illia, Galo Juan de Avila ArturoIcon
Tipo del evento: Jornada
Nombre del evento: XX Jornadas Anuales de la Sociedad Argentina de Biología y XVII Jornadas de la Sociedad Uruguaya de Biociencias. “NANOBIOTECNOLOGÍA: Pequeñas soluciones para grandes problemas
Fecha del evento: 05/12/2018
Institución Organizadora: Sociedad Argentina de Biología;
Idioma: Inglés
Clasificación temática:
Nano-materiales

Resumen

We have synthesized titania mesoporous films using titanium (IV) chloride as sol-gel precursor and surfactants from Pluronics® (Pluronic F-127, POE-POP-POE) and Brij series (B96 y B58, alquil-POE) that act like molds for pore size and distribution. Nanotopography is known to be key for adhesion and cellular growth. In this experiment, we demonstrate that nanotopography is also determinant for proliferation of eukaryotic microorganisms such as Candida albicans (ATCC 10231). We cultivated the microorganism in the presence of the films, the films derivatized with APTES ((3-Aminopropyl)triethoxysilane) and the films derivatized with APTES and then doped with CuCl2 (a known fungicide). Results show that mesoporous films prepared with Brij-96 presented the best outcome in regards of controlling cellular proliferation (up to a 75% inhibition of development in the Brij-96 derivatized with APTES-CuCl2). We also characterized the mesoporous films by performing a scratch essay, which determines damage resistance of the material, and a contact angle assay. Results showed that every film tested can resist up to 40N without tearing and the contact angle, that determines superficial hydrophilicity, allowed us to establish that the coating made with Brij-96 is the least hydrophilic coating of all. This is in accordance with minor cellular proliferation results using this surface. We observed our films through scanning electron microscopy (SEM) and demonstrate that films derivatized with APTES or with APTES-CuCl2 did not change the original nanotopography of the coating. Lastly, we did an EDS (Energy-dispersive X-ray spectroscopy) essay to ratify the presence of Ti in all of the films, C and N in the ones derivatized with APTES, and C, N and Cu in the ones derivatized with APTES-CuCl2.
Palabras clave: MESOPOROUS COATINGS , NANOTOPOGRAPHY , COPPER , FUNGICIDAL ACTIVITY
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info:eu-repo/semantics/openAccess Excepto donde se diga explícitamente, este item se publica bajo la siguiente descripción: Creative Commons Attribution-NonCommercial-ShareAlike 2.5 Unported (CC BY-NC-SA 2.5)
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URI: http://hdl.handle.net/11336/129610
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Eventos de SEDE CENTRAL
Citación
Mesoporous titania coating: determination of its physicochemical properties and yeast behavior; XX Jornadas Anuales de la Sociedad Argentina de Biología y XVII Jornadas de la Sociedad Uruguaya de Biociencias. “NANOBIOTECNOLOGÍA: Pequeñas soluciones para grandes problemas; Buenos Aires; Argentina; 2018; 1-1
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