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dc.contributor.author GAMA LARA, SERGIO ARTURO
dc.contributor.author Pérez Mendoza, Martha Stephanie
dc.contributor.author VILCHIS NESTOR, ALFREDO RAFAEL
dc.contributor.author NATIVIDAD RANGEL, REYNA
dc.creator GAMA LARA, SERGIO ARTURO; 327203
dc.creator Pérez Mendoza, Martha Stephanie;x1350191
dc.creator VILCHIS NESTOR, ALFREDO RAFAEL; 161073
dc.creator NATIVIDAD RANGEL, REYNA; 87755
dc.date.accessioned 2020-01-22T20:55:41Z
dc.date.available 2020-01-22T20:55:41Z
dc.date.issued 2020-01-18
dc.identifier.issn 1996-1944
dc.identifier.uri http://hdl.handle.net/20.500.11799/105355
dc.description Es un artículo científico de acceso abierto. es
dc.description.abstract Bionanotechnology is a relatively new term that implies the use of some biological material or organisms in order to prepare nanosystems or nanoparticles. This work presents the preparation and bactericide application of a sustainable nanometric system (silver nanoparticles) using a waste biological support (bovine bone powder). This system was prepared by the method of metallic salt reduction, using NaBH4 as reducing agent and AgNO3 as metallic salt. Two silver contents were analyzed, 1% and 5% weight. The latter was found to be more efficient than the former. Transmission electronic microscopy shows an average size of 10.5 ± 3.3 nm and quasi-sphere morphology. The antimicrobial assay shows that a 5% weight content of silver had a bactericide effect for Escherichia coli at 46.8 min of exposure. The minimum inhibitory concentration (MIC) of silver nanoparticles supported on bovine bone powder for Escherichia coli was 7.5 µg/mL. The biocomposite exhibits a specific antibacterial kinetics constant (k) of 0.1128 min−1 and decimal reduction time (DRT) of 20.39 min for Escherichia coli. Thus, it was concluded that a biocomposite was prepared with a biodegradable, waste, and low-cost support, under mild conditions (room temperature and atmospheric pressure) and using water as solvent. es
dc.language.iso eng es
dc.publisher MDPI es
dc.rights openAccess es
dc.rights.uri http://creativecommons.org/licenses/by-nc-nd/4.0
dc.subject nanocomposite es
dc.subject Esterichia coli es
dc.subject bactericide effect es
dc.subject Ag nanoparticles es
dc.subject minimum inhibitory concentration es
dc.subject.classification BIOLOGÍA Y QUÍMICA
dc.title Bionannotechnology: Silver nanoparticles supported on bovine powder used as bactericide es
dc.type Artículo es
dc.provenance Científica es
dc.road Dorada es
dc.organismo Química Unidad Cerrillo es
dc.ambito Local es
dc.cve.CenCos 20403 es
dc.audience students es
dc.audience researchers es
dc.type.conacyt article
dc.identificator 2
dc.relation.vol 13


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  • Título
  • Bionannotechnology: Silver nanoparticles supported on bovine powder used as bactericide
  • Autor
  • GAMA LARA, SERGIO ARTURO
  • Pérez Mendoza, Martha Stephanie
  • VILCHIS NESTOR, ALFREDO RAFAEL
  • NATIVIDAD RANGEL, REYNA
  • Fecha de publicación
  • 2020-01-18
  • Editor
  • MDPI
  • Tipo de documento
  • Artículo
  • Palabras clave
  • nanocomposite
  • Esterichia coli
  • bactericide effect
  • Ag nanoparticles
  • minimum inhibitory concentration
  • Los documentos depositados en el Repositorio Institucional de la Universidad Autónoma del Estado de México se encuentran a disposición en Acceso Abierto bajo la licencia Creative Commons: Atribución-NoComercial-SinDerivar 4.0 Internacional (CC BY-NC-ND 4.0)

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