Leptospirosis is an important zoonotic disease in the Pacific Islands. In Fiji, two successive cyclones and severe flooding in 2012 resulted in outbreaks with 576 reported cases and 7% case-fatality. We conducted a cross-sectional seroprevalence study and used an eco-epidemiological approach to characterize risk factors and drivers for human leptospirosis infection in Fiji, and aimed to provide an evidence base for improving the effectiveness of public health mitigation and intervention strategies. Antibodies indicative of previous or recent infection were found in 19.4% of 2152 participants (81 communities on the 3 main islands). Questionnaires and geographic information systems data were used to assess variables related to demographics, individual behaviour, contact with animals, socioeconomics, living conditions, land use, and the natural environment. On multivariable logistic regression analysis, variables associated with the presence of Leptospira antibodies included male gender (OR 1.55), iTaukei ethnicity (OR 3.51), living in villages (OR 1.64), lack of treated water at home (OR 1.52), working outdoors (1.64), living in rural areas (OR 1.43), high poverty rate (OR 1.74), living <100m from a major river (OR 1.41), pigs in the community (OR 1.54), high cattle density in the district (OR 1.04 per head/sqkm), and high maximum rainfall in the wettest month (OR 1.003 per mm). Risk factors and drivers for human leptospirosis infection in Fiji are complex and multifactorial, with environmental factors playing crucial roles. With global climate change, severe weather events and flooding are expected to intensify in the South Pacific. Population growth could also lead to more intensive livestock farming; and urbanization in developing countries is often associated with urban and peri-urban slums where diseases of poverty proliferate. Climate change, flooding, population growth, urbanization, poverty and agricultural intensification are important drivers of zoonotic disease transmission; these factors may independently, or potentially synergistically, lead to enhanced leptospirosis transmission in Fiji and other similar settings.
References
[1]
Victoriano AF, Smythe LD, Gloriani-Barzaga N, Cavinta LL, Kasai T, et al. Leptospirosis in the Asia Pacific Region. BMC Infect Dis. 2009;9: 147. doi: 10.1186/1471-2334-9-147. pmid:19732423
[2]
Costa F, Hagan JE, Calcagno J, Kane M, Torgerson P, et al. Global Morbidity and Mortality of Leptospirosis: A Systematic Review. PLoS Negl Trop Dis. 2015;9: e0003898. doi: 10.1371/journal.pntd.0003898. pmid:26379143
[3]
Lau CL, Smythe LD, Craig SB, Weinstein P. Climate Change, Flooding, Urbanisation and Leptospirosis: Fuelling the Fire? Trans R Soc Trop Med Hyg. 2010;104: 631–638. doi: 10.1016/j.trstmh.2010.07.002. pmid:20813388
[4]
Mwachui MA, Crump L, Hartskeerl R, Zinsstag J, Hattendorf J. Environmental and Behavioural Determinants of Leptospirosis Transmission: A Systematic Review. PLoS Negl Trop Dis. 2015;9: e0003843. doi: 10.1371/journal.pntd.0003843. pmid:26379035
[5]
Berlioz-Arthaud A, Kiedrzynski T, Singh N, Yvon JF, Roualen G, et al. Multicentre Survey of Incidence and Public Health Impact of Leptospirosis in the Western Pacific. Trans R Soc Trop Med Hyg. 2007;101: 714–721. pmid:17442353 doi: 10.1016/j.trstmh.2007.02.022
[6]
Coudert C, Beau F, Berlioz-Arthaud A, Melix G, Devaud F, et al. [Human Leptospirosis in French Polynesia. Epidemiological, Clinical and Bacteriological Features]. Med Trop (Mars). 2007;67: 137–144.
[7]
Goarant C, Laumond-Barny S, Perez J, Vernel-Pauillac F, Chanteau S, et al. Outbreak of Leptospirosis in New Caledonia: Diagnosis Issues and Burden of Disease. Trop Med Int Health. 2009;14: 926–929. doi: 10.1111/j.1365-3156.2009.02310.x. pmid:19552660
[8]
Lau C, Dobson A, Smythe L, Fearnley E, Skelly C, et al. Leptospirosis in American Samoa 2010—Epidemiology, Environmental Drivers, and the Management of Emergence. Am J Trop Med Hyg. 2012;86: 309–319. doi: 10.4269/ajtmh.2012.11-0398. pmid:22302868
[9]
Gero A, Fletcher S, Rumsay M, Thiessen J, Kuruppu N, et al. Disasters and Climate Change in the Pacific: Adaptive Capacity of Humanitarian Response Organizations. Climate and Development. 2014;7: 35–46. doi: 10.1080/17565529.2014.899888
[10]
McIver L, Kim R, Woodward A, Hales S, Spickett J, et al. Health Impacts of Climate Change in Pacific Island Countries: A Regional Assessment of Vulnerabilities and Adaptation Priorities. Environ Health Perspect. 2015. doi: 10.1289/ehp.1509756
[11]
McIver L, Naicker J, Hales S, Singh S, Dawainavesi A. Climate Change and Health in Fiji: Environmental Epidemiology of Infectious Diseases & Potential for Climate-Based Early Warning Systems. Fiji J of Pub Health. 2012;1: 7–13.
[12]
Derne BT, Fearnley EJ, Lau CL, Paynter S, Weinstein P. Biodiversity and Leptospirosis Risk: A Case of Pathogen Regulation? Med Hypotheses. 2011;77: 339–344. doi: 10.1016/j.mehy.2011.05.009. pmid:21652151
[13]
Vanasco NB, Schmeling MF, Lottersberger J, Costa F, Ko AI, et al. Clinical Characteristics and Risk Factors of Human Leptospirosis in Argentina (1999–2005). Acta Trop. 2008;107: 255–258. doi: 10.1016/j.actatropica.2008.06.007. pmid:18671932
[14]
Ko AI, Galvao Reis M, Ribeiro Dourado CM, Johnson WD Jr., Riley LW. Urban Epidemic of Severe Leptospirosis in Brazil. Salvador Leptospirosis Study Group. Lancet. 1999;354: 820–825. pmid:10485724 doi: 10.1016/s0140-6736(99)80012-9
[15]
Amilasan AS, Ujiie M, Suzuki M, Salva E, Belo MC, et al. Outbreak of Leptospirosis after Flood, the Philippines, 2009. Emerg Inf Dis. 2012;18: 91–94. doi: 10.3201/eid1801.101892
[16]
Wynwood SJ, Craig SB, Graham GC, Blair BR, Burns MA, et al. The Emergence of Leptospira Borgpetersenii Serovar Arborea as the Dominant Infecting Serovar Following the Summer of Natural Disasters in Queensland, Australia 2011. Trop Biomed. 2014;31: 281–285. pmid:25134896
[17]
Ghosh A, Khan S, Kishore K. Leptospirosis in Fiji: Incidence between 2000 to 2007 and Review of Literature. Fiji Med J. 2010;29: 8–14.
[18]
Ram P, Collings DF. Further Observations on the Epidemiology of Leptospirosis in Fiji. Fiji Med J. 1982;10: 71–75.
[19]
Lau C, Jagals P. A Framework for Assessing and Predicting the Environmental Health Impact of Infectious Diseases: A Case Study of Leptospirosis. Rev Environ Health. 2012;27: 1–12. doi: 10.1515/reveh-2012-0023
[20]
Fiji Bureau of Statistics. Census of Population and Housing. 2007.
[21]
United Nations. World Economic Situation and Prospects 2015. New York. United Nations.
[22]
Economy Watch. Gdp Per Capita Data for All Countries. 2015.
[23]
Republic of Fiji Islands. Ministry of Lands and Mineral Resources DoL. Digital Data from Fiji Land Information System (Flis). GIS Data of 1:50k Topographic Maps.
[24]
Republic of Fiji Islands. Ministry of Agriculture. National Soil Survey. GIS Data of Soils and Land Use/Cover.
[25]
Barker G, Price R. Environmental and Biogeographic Classifications as Spatial Frameworks for Assessing Representativeness in Island Archipelagos: A Fijian Case Study. Hamilton, New Zealand. Landcare Research.
[26]
Bank World. Republic of Fiji Poverty Trends, Profiles and Small Area Estimation (Poverty Maps) in Republic of Fiji (2003–2009). Washington, DC. World Bank.
[27]
Fiji Ministry of Agriculture. Fiji National Agricultural Census 2009.
[28]
World Health Organization. Human Leptospirosis: Guidance for Diagnosis, Surveillance and Control. 2003.
[29]
Haake DA, Levett PN. Leptospirosis in Humans. Curr Top Microbiol Immunol. 2015;387: 65–97. doi: 10.1007/978-3-662-45059-8_5. pmid:25388133
Simms J. Animal Leptospirosis in the Federated States of Micronesia. Pac Health Dialog. 1997;5: 30–37.
[32]
Colt S, Pavlin BI, Kool JL, Johnson E, McCool JP, et al. Human Leptospirosis in the Federated States of Micronesia: A Hospital-Based Febrile Illness Survey. BMC Infect Dis. 2014;14: 186. doi: 10.1186/1471-2334-14-186. pmid:24708723
[33]
Reis RB, Ribeiro GS, Felzemburgh RD, Santana FS, Mohr S, et al. Impact of Environment and Social Gradient on Leptospira Infection in Urban Slums. PLoS Negl Trop Dis. 2008;2: e228. doi: 10.1371/journal.pntd.0000228. pmid:18431445
[34]
Bovet P, Yersin C, Merien F, Davis CE, Perolat P. Factors Associated with Clinical Leptospirosis: A Population-Based Case-Control Study in the Seychelles (Indian Ocean). Int J Epidemiol. 1999;28: 583–590. pmid:10405868 doi: 10.1093/ije/28.3.583
[35]
Van CT, Thuy NT, San NH, Hien TT, Baranton G, et al. Human Leptospirosis in the Mekong Delta, Viet Nam. Trans R Soc Trop Med Hyg. 1998;92: 625–628. pmid:10326104 doi: 10.1016/s0035-9203(98)90787-8
[36]
Kawaguchi L, Sengkeopraseuth B, Tsuyuoka R, Koizumi N, Akashi H, et al. Seroprevalence of Leptospirosis and Risk Factor Analysis in Flood-Prone Rural Areas in Lao Pdr. Am J Trop Med Hyg. 2008;78: 957–961. pmid:18541776
[37]
Morshed MG, Konishi H, Terada Y, Arimitsu Y, Nakazawa T. Seroprevalence of Leptospirosis in a Rural Flood Prone District of Bangladesh. Epidemiol Infect. 1994;112: 527–531. pmid:8005218 doi: 10.1017/s0950268800051220
[38]
Lau C, Skelly C, Craig S, Smythe L, Weinstein P. Emergence of New Leptospiral Serovars in American Samoa—Ascertainment or Ecological Change? BMC Infect Dis. 2012;12: 19. doi: 10.1186/1471-2334-12-19. pmid:22273116
[39]
Johnson MA, Smith H, Joeph P, Gilman RH, Bautista CT, et al. Environmental Exposure and Leptospirosis, Peru. Emerg Infect Dis. 2004;10: 1016–1022. pmid:15207052 doi: 10.3201/eid1006.030660
[40]
Sharma S, Vijayachari P, Sugunan AP, Natarajaseenivasan K, Sehgal SC. Seroprevalence of Leptospirosis among High-Risk Population of Andaman Islands, India. Am J Trop Med Hyg. 2006;74: 278–283. pmid:16474084
[41]
Faddy H, Seed C, Lau C, Racloz V, Flower R, et al. Antibodies to Leptospira among Blood Donors in Higher-Risk Areas of Australia: Possible Implications for Transfusion Safety. Blood Transfus. 2015;13: 32–36. doi: 10.2450/2014.0012-14. pmid:24960651
[42]
Lau CL, Skelly C, Dohnt M, Smythe LD. The Emergence of Leptospira Borgpetersenii Serovar Arborea in Queensland, Australia, 2001 to 2013. BMC Infect Dis. 2015;15: 230. doi: 10.1186/s12879-015-0982-0. pmid:26072306
[43]
Lau C, Clements A, Skelly C, Dobson A, Smythe L, et al. Leptospirosis in American Samoa—Estimating and Mapping Risk Using Environmental Data. PLoS Negl Trop Dis. 2012;6: e1669. doi: 10.1371/journal.pntd.0001669. pmid:22666516
[44]
Oliveira DS, Guimaraes MJ, Portugal JL, Medeiros Z. The Socio-Demographic, Environmental and Reservoir Factors Associated with Leptospirosis in an Urban Area of North-Eastern Brazil. Ann Trop Med Parasitol. 2009;103: 149–157. doi: 10.1179/136485909X398221. pmid:19208299
[45]
Karande S, Kulkarni H, Kulkarni M, De A, Varaiya A. Leptospirosis in Children in Mumbai Slums. Indian J Pediatr. 2002;69: 855–858. pmid:12450293 doi: 10.1007/bf02723705
[46]
Hotez PJ. Neglected Infections of Poverty in the United States of America. PLoS Negl Trop Dis. 2008;2: e256. doi: 10.1371/journal.pntd.0000256. pmid:18575621
[47]
Hotez PJ, Gurwith M. Europe's Neglected Infections of Poverty. Int J Infect Dis 2011;15: e611–619. doi: 10.1016/j.ijid.2011.05.006. pmid:21763173
[48]
International Livestock Research Institute. Mapping of Poverty and Likely Zoonoses Hotspots. 2012.
[49]
Adler B. Leptospira and Leptospirosis. Adler B. Verlag Berlin Heidelberg: Springer; 2015.