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The Effect of Precipitation on the Transmission of Japanese Encephalitis (JE) Virus in Nature: A Complex Effect on Antibody-Positive Rate to JE Virus in Sentinel Pigs

DOI: 10.3390/ijerph10051831

Keywords: Japanese encephalitis, pigs, climate change, precipitation

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Abstract:

Japanese encephalitis (JE) is one of the most important mosquito-borne viral diseases in Asia. Pigs are a natural host and the amplifier of JE virus. The sero-conversion rate to JE virus in sentinel pigs reflects the activity of JE virus in the region. We analyzed whether precipitation has any effect on the sero-conversion rate to JE virus in sentinel pigs. Linear regression analysis was performed to determine the correlations between the levels of precipitation and sero-conversion rates to JE virus, in the entire year and during summertime over the period of 32 years from 1969 to 2000. The levels of the annual and summertime precipitation demonstrated statistically significant positive correlations with sero-conversion rates for the whole of the country and for some regions in Japan. The levels of the summertime precipitation, on the other hand, demonstrated statistically significant inverse correlations with the sero-conversion rates in other regions. Further, the levels of precipitation during preceding 10-day periods from days 1–40 before blood collection showed inverse correlation with antibody-positive rates in some regions. The results indicate that the relationship between the annual and summertime precipitation, and the sero-conversion rate to JE virus is complex; both positive and inverse effects are demonstrated depending on the regions.

References

[1]  Gould, E.A.; Higgs, S. Impact on climate change and other factors on emerging arbovirus diseases. Trans. R. Soc. Trop. Med. Hig. 2009, 103, 109–121.
[2]  Sutherst, R.C. Global change and human vulnerability to vector-borne diseases. Clin. Microbiol. Rev. 2004, 17, 136–173.
[3]  Reiter, P. Climate change and mosquito-borne disease. Env. Health Perspect. 2001, 109, 141–161.
[4]  McMichael, A.J. Insights from past millennia into climatic impacts on human health and survival. Proc. Natl. Acad. Sci. USA 2012, 109, 4730–4737, doi:10.1073/pnas.1120177109.
[5]  McMichael, A.J. Climate change: Heat, health, and longer horizons. Proc. Natl. Acad. Sci. USA 2010, 107, 9483–9484, doi:10.1073/pnas.1004894107.
[6]  Markandya, A.; Chiabai, A. Valuing climate change impacts on human health: Empirical evidence from the literature. Int. J. Environ. Res. Publ. Health 2009, 6, 759–786.
[7]  Gubler, D.J.; Kuno, G.; Markoff, R. Flavviruses. In Fields Virology, 5th; Knipe, D., Howley, P.M., Eds.; Lippincott Williams & Wilkins: New York, NY, USA, 2007; pp. 1153–1252.
[8]  Oya, A.; Kurane, I. Japanese encephalitis for a reference to international travelers. J. Travel Med. 2007, 14, 259–268.
[9]  Arai, S.; Matsunaga, Y.; Takasaki, T.; Tanaka-Taya, K.; Taniguchi, K.; Okabe, N.; Kurane, I. Vaccine Preventable Diseases Surveillance Program of Japan. Japanese encephalitis: Surveillance and elimination effort in Japan from 1982 to 2004. Jap. J. Infect. Dis. 2008, 61, 333–338.
[10]  Rosen, L. The natural history of Japanese encephalitis virus. Annu. Rev. Microbiol. 1986, 40, 76–79.
[11]  Maeda, O.; Karaki, T.; Kuroda, A.; Karoji, Y.; Sasaki, O.; Takenokuma, K. Epidemiological studies of Japanese encephalitis in Kyoto city area, Japan. II. Annual patterns of virus dissemination on virus recoveries from unfed Culex tritaeniorhynchus summorosus. Jap. J. Med. Sci. Biol. 1978, 31, 39–51.
[12]  Bi, P.; Zhang, Y.; Parton, K.A. Weather variables and Japanese encephalitis in the metropolitan area of Jian city, China. J. Infect. 2007, 55, 551–556, doi:10.1016/j.jinf.2007.07.004.
[13]  Hsu, S.M.; Yen, A.M.; Chen, T.M. The impact of climate on Japanese encephalitis. Epidemiol. Infect. 2008, 16, 980–987.
[14]  Suryanarayana, M.U.; Srinivasa, R.M.; Arunachalam, N. The effect od climate factors on the distribution and abundance of Japanese encephalitis vectors in Kunool district of Andhara Pradeshh, india. J. Vect. Borne Dis. 2010, 47, 26–32.
[15]  Musuoka, P.; Klein, T.A.; Kim, H.C.; Calborn, D.M.; Achee, N.; Andre, R. Modeling the distribution of Culex tritaeniorhinchus to predict Japanese encephalitis distribution in Republic of Korea. Geospcial. Health 2010, 5, 45–47.
[16]  Wada, Y. Theoretical considerations on the epidemic of Japanese encephalitis. Trop. Med. 1075, 17, 171–199.

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