[10]
Christiansen, J. Global Infections by the Numbers. Sci. Am., 2018, 318, 48.
[15]
Global Health Estimates. Deaths by cause, age, sex, by country and
by region, 2000-2016. World Health Organization: Geneva, 2018.
[18]
Nair, H.; Brooks, W.A.; Katz, M.; Roca, A.; Berkley, J.A.; Madhi, S.A.; Simmerman, J.M.; Gordon, A.; Sato, M.; Howie, S.; Krishnan, A.; Ope, M.; Lindblade, K.A.; Carosone-Link, P.; Lucero, M.; Ochieng, W.; Kamimoto, L.; Dueger, E.; Bhat, N.; Vong, S.; Theodoratou, E.; Chittaganpitch, M.; Chimah, O.; Balmaseda, A.; Buchy, P.; Harris, E.; Evans, V.; Katayose, M.; Gaur, B.; O’Callaghan-Gordo, C.; Goswami, D.; Arvelo, W.; Venter, M.; Briese, T.; Tokarz, R.; Widdowson, M.A.; Mounts, A.W.; Breiman, R.F.; Feikin, D.R.; Klugman, K.P.; Olsen, S.J.; Gessner, B.D.; Wright, P.F.; Rudan, I.; Broor, S.; Simões, E.A.; Campbell, H. Global burden of respiratory infections due to seasonal influenza in young children: a systematic review and meta-analysis.
Lancet, 2011,
378(9807), 1917-1930.
[
http://dx.doi.org/10.1016/S0140-6736(11)61051-9] [PMID:
22078723]
[20]
World Health Organization. Asia Pacific Strategy for Emerging
Diseases 2010.
[25]
McLeod, A.; Morgan, N.; Prakash, A.; Hinrichs, J. Economic and Social Impacts of Avian Influenza; FAO: Rome, 2005.
[26]
World Bank. People, pathogens, and our planet: Volume one: towards a one health approach for controlling zoonotic diseases (English).World Bank: Washington, DC, 2010.
[30]
Pelaz, B.; Alexiou, C.; Alvarez-Puebla, R.A.; Alves, F.; Andrews, A.M.; Ashraf, S.; Balogh, L.P.; Ballerini, L.; Bestetti, A.; Brendel, C.; Bosi, S.; Carril, M.; Chan, W.C.; Chen, C.; Chen, X.; Chen, X.; Cheng, Z.; Cui, D.; Du, J.; Dullin, C.; Escudero, A.; Feliu, N.; Gao, M.; George, M.; Gogotsi, Y.; Grünweller, A.; Gu, Z.; Halas, N.J.; Hampp, N.; Hartmann, R.K.; Hersam, M.C.; Hunziker, P.; Jian, J.; Jiang, X.; Jungebluth, P.; Kadhiresan, P.; Kataoka, K.; Khademhosseini, A.; Kopeček, J.; Kotov, N.A.; Krug, H.F.; Lee, D.S.; Lehr, C.M.; Leong, K.W.; Liang, X.J.; Ling Lim, M.; Liz-Marzán, L.M.; Ma, X.; Macchiarini, P.; Meng, H.; Möhwald, H.; Mulvaney, P.; Nel, A.E.; Nie, S.; Nordlander, P.; Okano, T.; Oliveira, J.; Park, T.H.; Penner, R.M.; Prato, M.; Puntes, V.; Rotello, V.M.; Samarakoon, A.; Schaak, R.E.; Shen, Y.; Sjöqvist, S.; Skirtach, A.G.; Soliman, M.G.; Stevens, M.M.; Sung, H.W.; Tang, B.Z.; Tietze, R.; Udugama, B.N.; VanEpps, J.S.; Weil, T.; Weiss, P.S.; Willner, I.; Wu, Y.; Yang, L.; Yue, Z.; Zhang, Q.; Zhang, Q.; Zhang, X.E.; Zhao, Y.; Zhou, X.; Parak, W.J. Diverse Applications of Nanomedicine.
ACS Nano, 2017,
11(3), 2313-2381.
[
http://dx.doi.org/10.1021/acsnano.6b06040] [PMID:
28290206]
[31]
Maclachlan, N.; Dubovi, E.J. Fenner’s Veterinary Virology, 5th ed; Academic Press: Cambridge, 2016.
[32]
Knipe, D.M.; Howley, P.M. Fields Virology, 6th ed; Lippincott Williams & Wilkins: Philadelphia, PA, USA, 2013.
[38]
Karabatsos, N. International catalogue of arboviruses: including certain other viruses of vertebrates. In: Published for the
Subcommittee on Information Exchange of the American
Committee on Arthropod-borne Viruses by the American Society of
Tropical Medicine and Hygiene, 3rd ed; San Antonio, 1985.
[65]
Pinheiro, F.P.; Travassos da Rosa, A.P. Handbook of Zoonoses; Beran, G.W., Ed.; CRC Press: Bocaraton, FL, 1994.
[79]
Murphy, F.; Gibbs, E.; Horzinek, M.; Studdert, M. Veterinary Virology, 3rd ed; Academic Press: Cambridge, 1991.
[96]
Park, K. Park’s textbook of preventive and social medicine, 23rd ed; Bhanot Publishers: Bhopal, 2015.
[113]
Wilde, H.; Hemachudha, T.; Wacharapluesadee, S.; Lumlertdacha, B.; Tepsumethanon, V. One health: the human-animal-environment interfaces in emerging infectious diseases; Springer: Berlin, 2013, p. 185.
[114]
WHO Expert Consultation on Rabies & World Health Organization. WHO Expert Consultation on Rabies: first report; World Health Organization: Geneva, 2005.
[126]
Kradin, R.L. Diagnostic Pathology of Infectious Disease, 2nd ed; Elsevier: Amsterdam, 2018.
[127]
Cohen, J.; Powderly, W.G.; Opal, S.M. Infectious Diseases, 4th ed; Elsevier: Amsterdam, 2018.
[285]
Bazzill, J.D.; Stronsky, S.M.; Kalinyak, L.C.; Ochyl, L.J.; Steffens, J.T.; van Tongeren, S.A.; Cooper, C.L.; Moon, J.J. Vaccine nanoparticles displaying recombinant Ebola virus glycoprotein for induction of potent antibody and polyfunctional T cell responses. Nanomedicine, 2018, 18, 30556-30562.
[302]
Asgary, V.; Mafi, O. K.; Khosravy, M. S.; Janani, A.; Asl, N. N.; Bashar, R.; Poortaghi, H.; Cohan, H. A.; Shoari, A.; Cohan, R. A. Evaluation of the Effect of Silver Nanoparticles on Induction of Neutraliz-ing Antibodies against Inactivated Rabies Virus. vacres., 2014, 1(1), 31-34.
[317]
Soliman, M.G.; Mohamed, A.F.; El Sayed, R.A.; Elqasem, A.A.A. Immunohistochemical and histological changes in the spleen induced by gold nanoparticles as alternative adjuvant against rift vally fever virus. European J. Biomed. Pharma. Sci., 2017, 4, 529.
[345]
Richner, J. M.; Himansu, S.; Dowd, K. A.; Butler, S. L.; Salazar, V.; Fox, J. M.; Julander, J. G.; Tang, W. W.; Shresta, S.; Pierson, T. C.; Ciaramella, G.; Diamond, M S. Modified mRNA Vaccines Protect against Zika Virus Infection., Cell., 2017, 168(6), P1114-P1125. e10.
[384]
Yuan, W.; Li, Y.; Wang, J.; Wang, J.; Sun, J. A nanoparticle-assisted PCR assay for the detection of encephalomyocarditis virus. Vet. Arh., 2016, 86(1), 1-8.
[388]
Valdivia-Granda, W.; Keating, C.D.; Kann, M.; Beresford, R.; Kelley, S.O. In: Detection of encephalic and hemorrhagic viruses: Integration of micro-and nano-fabrication with computational tools; Proceedings of the International Conference on MEMS, NANO and Smart Systems, ICMENS, Banff:. Canada, 2005 July; pp. 408-414.
[420]
Bosch, I.; de Puig, H.; Hiley, M.; Carré-Camps, M.; Perdomo-Celis, F.; Narváez, C. F.; Salgado, D. M.; Senthoor, D.; O'Grady, M.; Phillips, E.; Durbin, A.; Fandos, D.; Miyazaki, H.; Yen, C. W.; Gélvez-Ramírez, M.; Warke, R. V.; Ribeiro, L. S.; Teixeira, M. M.; Almeida, R. P.; Muñóz-Medina, J. E.; Ludert, J. E.; Nogueira, M. L.; Colombo, T. E.; Terzian, A. C. B.; Bozza, P. T.; Calheiros, A. S.; Vieira, Y. R.; Barbosa-Lima, G.; Vizzoni, A.; Cerbino-Neto, J.; Bozza, F. A.; Souza, T. M. L.; Trugilho, M. R. O.; de Filippis, A. M. B.; de Sequeira, P. C.; Marques, E. T. A.; Magalhaes, T.; Díaz, F. J.; Restrepo, B. N.; Marín, K.; Mattar, S.; Olson, D.; Asturias, E. J.; Lucera, M.; Singla, M.; Medigeshi, G. R.; de Bosch, N.; Tam, J.; Gómez-Márquez, J.; Clavet, C.; Villar, L.; Hamad-Schifferli, K.; Gehrke, L. Rapid antigen tests for dengue virus serotypes and Zika virus in patient serum.
Sci Transl Med., 2017,
9(409) pii: eaan1589.
[
http://dx.doi.org/10.1126/scitranslmed.aan1589]
[421]
Rahman, S.A.; Saadun, R.; Azmi, N.E.; Ariffin, N.; Abdullah, J.; Yusof, N.A.; Sidek, H.; Hajian, R. Label-free dengue detection utilizing PNA/DNA hybridization based on the aggregation process of unmodified gold nanoparticles. J. Nanomater., 2014, 2014 839286.
[464]
Gholami, H.; Emami, T.; Golchinfar, F.; Madani, R.; Gheshlaghchaei, S.I. Development of a Nano-ELISA system for the rapid and sensitive detection of H9N2 avian influenza. Arch. Razi Inst., 2016, 71(1), 29-34.
[466]
Wiriyachaiporn, N.; Sirikett, H.; Dharakul, T. In: Rapid Influenza a
Antigen Detection Using Carbon Nanostrings As Label for Lateral
Flow Immunochromatographic Assay; Proceedings of the IEEE
13th International Conference on Nanotechnology (IEEE-NANO),
Beijing: China, August 5-8. , 2013.
[486]
Williams, J.K. Evidence for the Inhibition of Dengue Virus Binding in the Presence of Silver Nanoparticles., Masters Thesis, Air Force
Institute of Technology: Kadun. 2015.
[491]
Anders, C.B. A SERS and SEM-EDX Study of the Antiviral
Mechanism of Creighton Silver Nanoparticles against Vaccinia
Virus; Masters Thesis, Wright State University: Ohio, 2012. June.
[493]
Engel, R.; Rizzo, J.L.I.; Melkonian-Fincher, K. Antiviral
compositions. U.S. Patent 20150196032A1, 2007..