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In vitro evaluation of bactericidal effect of silver and gold-silver nanoparticles coated with silicon dioxide on Xanthomonas fragariae

Published online by Cambridge University Press:  05 September 2017

Juana-Cristina Ibarra-Arán*
Affiliation:
Instituto Politécnico Nacional – Centro de Investigación en Ciencia Aplicada y Tecnología Avanzada Unidad Altamira, Km. 14.5 Carretera Tampico-Puerto Industrial Altamira, Altamira, Tamaulipas, México
Douglas Rodríguez-Martínez
Affiliation:
Crop Protection – Department of Applied Research, Driscoll´s, Ave. Moctezuma 144, Piso 1, Ciudad del Sol, Zapopan, Jalisco, Z.C.45050, México
Eugenio Rodríguez-González
Affiliation:
Instituto Politécnico Nacional – Centro de Investigación en Ciencia Aplicada y Tecnología Avanzada Unidad Altamira, Km. 14.5 Carretera Tampico-Puerto Industrial Altamira, Altamira, Tamaulipas, México
Jesús-Roberto González-Castillo
Affiliation:
Instituto Politécnico Nacional – Centro de Investigación en Ciencia Aplicada y Tecnología Avanzada Unidad Altamira, Km. 14.5 Carretera Tampico-Puerto Industrial Altamira, Altamira, Tamaulipas, México
*
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Abstract

In this work it was evaluated the bactericidal effect of silver and silver-gold nanoparticles coated with silicon dioxide on Xanthomonas fragariae. Nanoparticles were synthesized by combining laser ablation and chemical synthesis techniques. Irradiating the samples at the same wavelength where nanoparticles exhibit its maximum absorbance is possible to photo induce the bactericidal effect by detonating the surface plasmon resonance. The results showed that the minimum bactericidal concentration (MBC) of silver nanoparticles was 16 μM (referred to [AgNO3]) and for silver-gold nanoparticles were 32 μM (referred to [AgNO3-HAuCl4]) at 60 minutes of irradiation.

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Articles
Copyright
Copyright © Materials Research Society 2017 

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References

REFERENCES

FAOSTAT, in World production of Strawberry 2013, FAO, 2016.Google Scholar
SHCP, in Panorama de la fresa. FNDARFP, 2015.Google Scholar
Weller, S., et al. , Journal of microbiological methods. 70, 2 (2007).Google Scholar
Fernández-Pavía, S., et al. , Plant Disease. 98, 5 (2014).Google Scholar
CABI and EPPO, in Specific quarantine requirements, 1990.Google Scholar
Turechek, W.W. and Peres, N.A., Plant Disease, 93, 3 (2009).Google Scholar
Jones, J., et al. , Phytopathology, 81, 7 (1991).Google Scholar
Paret, M.L., et al. ., Phytopathology, 103, 3 (2013).Google Scholar
Silver, S., Microbiology Reviews, 27 (2003).Google Scholar
Ouda, S.M., Research Journal of Microbiology, 9, 1 (2014).Google Scholar
Narayanan, K.B. and Park, H.H., European journal of plant pathology, 140, 2 (2014).Google Scholar
Kim, S.W., et al. , Mycobiology, 40, 1 (2012).Google Scholar
Xu, H., et al. , Biometals, 25, 1 (2012).Google Scholar
Prabhu, S. and Poulose, E.K., International Nano Letters, 2, 32 (2012).Google Scholar
Ku, H., et al. , Biometals, 1, 25 (2012).Google Scholar
Li, W.R., et al. , Applied Microbiology Biotechnology, 85, 4 (2010).Google Scholar
Musee, N., Thwala, M., and Nota, N., Journal Environmental Monitoring, 13, 5 (2011).CrossRefGoogle Scholar
Colman, B.P., et al. , Ecotoxicology, 21, 7 (2012).Google Scholar
Gonzalez-Castillo, J.R., et al. , Nanoscale Research Letters, 10, 1 (2015).Google Scholar
Rivera-Zabala, N., Thesis, Colegio de Postgraduados Mexico, 2016.Google Scholar
Mallin, M.P. and Murphy, C.J., Nano Letters, 2, 11 (2002).Google Scholar
Zhang, Q., et al. , Nanotechnology, 18, 24 (2007).Google Scholar
Mallik, K., et al. , Nano Letters, 1, 6 (2001).Google Scholar
Mulvaney, P., Langmuir, 12, 3 (1996).Google Scholar
Li, W.-R., et al. , Applied microbiology and biotechnology, 85, 4 (2010).Google Scholar
Prabhu, S. and Poulose, E.K., International Nano Letters, 2, 1 (2012).Google Scholar
Gersten, J. and Nitzan, A., The Journal of Chemical Physics, 73, 7 (1980).Google Scholar
Sweatlock, L., et al. , Physical Review B, 71, 23 (2005).Google Scholar