Volume 29, Number 8—August 2023
Research
Waterborne Infectious Diseases Associated with Exposure to Tropical Cyclonic Storms, United States, 1996–2018
Table 1
Pathogen | No. (%) cases in NNDSS | Pathogen type | Incubation period, d (range)† | Estimated cases attributed to waterborne transmission, %‡ | Years reported in NNDSS |
---|---|---|---|---|---|
Legionella | 77,765 (3.8) | Biofilm-forming bacteria | 5–6 (2–10) | 97 | 1996–2018 |
Cryptosporidium | 151,573 (7.4) | Parasite | 7 (2–12) | 43 | 1998–2018 |
Giardia | 297,379 (14.6) | Parasite | 7 (1–14) | 44 | 2002–2018 |
STEC | 128,332 (6.3) | Enteric bacteria | 0.5–4 (0.5–10) | 5 | 1996–2018 |
Salmonella | 964,293 (47.3) | Enteric bacteria | 0.5–2 (0.5–16) | 6 | 1998–2016 |
Shigella | 421,369 (20.4) | Enteric bacteria | 1–3 (0.5–7) | 4 | 1998–2018 |
*NNDSS, National Notifiable Disease Surveillance System (https://www.cdc.gov/nndss); STEC, Shiga toxin–producing Escherichia coli. †According to D.W.K. Acheson (42). ‡According to S.A. Collier et al. (12).
References
- Rappaport EN. Fatalities in the United States from Atlantic tropical cyclones: new data and interpretation. Bull Am Meteorol Soc. 2014;95:341–6. DOIGoogle Scholar
- Parks RM, Anderson GB, Nethery RC, Navas-Acien A, Dominici F, Kioumourtzoglou MA. Tropical cyclone exposure is associated with increased hospitalization rates in older adults. Nat Commun. 2021;12:1545. DOIPubMedGoogle Scholar
- Erickson TB, Brooks J, Nilles EJ, Pham PN, Vinck P. Environmental health effects attributed to toxic and infectious agents following hurricanes, cyclones, flash floods and major hydrometeorological events. J Toxicol Environ Health B Crit Rev. 2019;22:157–71. DOIPubMedGoogle Scholar
- Young I, Smith BA, Fazil A. A systematic review and meta-analysis of the effects of extreme weather events and other weather-related variables on Cryptosporidium and Giardia in fresh surface waters. J Water Health. 2015;13:1–17. DOIPubMedGoogle Scholar
- Andrade L, O’Dwyer J, O’Neill E, Hynds P. Surface water flooding, groundwater contamination, and enteric disease in developed countries: A scoping review of connections and consequences. Environ Pollut. 2018;236:540–9. DOIPubMedGoogle Scholar
- Weller D, Brassill N, Rock C, Ivanek R, Mudrak E, Roof S, et al. Complex interactions between weather, and microbial and physicochemical water quality impact the likelihood of detecting foodborne pathogens in agricultural water. Front Microbiol. 2020;11:134. DOIPubMedGoogle Scholar
- Craun GF, Brunkard JM, Yoder JS, Roberts VA, Carpenter J, Wade T, et al. Causes of outbreaks associated with drinking water in the United States from 1971 to 2006. Clin Microbiol Rev. 2010;23:507–28. DOIPubMedGoogle Scholar
- Cann KF, Thomas DR, Salmon RL, Wyn-Jones AP, Kay D. Extreme water-related weather events and waterborne disease. Epidemiol Infect. 2013;141:671–86. DOIPubMedGoogle Scholar
- US Census Bureau. Demographic turning points for the United States: population projections for 2020 to 2060 [cited 2022 Jul 11]. https://www.census.gov/content/dam/Census/library/publications/2020/demo/p25-1144.pdf
- Allaire M, Wu H, Lall U. National trends in drinking water quality violations. Proc Natl Acad Sci U S A. 2018;115:2078–83. DOIPubMedGoogle Scholar
- Woodruff JD, Irish JL, Camargo SJ. Coastal flooding by tropical cyclones and sea-level rise. Nature. 2013;504:44–52. DOIPubMedGoogle Scholar
- Collier SA, Deng L, Adam EA, Benedict KM, Beshearse EM, Blackstock AJ, et al. Estimate of burden and direct healthcare cost of infectious waterborne disease in the United States. Emerg Infect Dis. 2021;27:140–9. DOIPubMedGoogle Scholar
- Cunha BA, Burillo A, Bouza E. Legionnaires’ disease. Lancet. 2016;387:376–85. DOIPubMedGoogle Scholar
- Fletcher SM, Stark D, Harkness J, Ellis J. Enteric protozoa in the developed world: a public health perspective. Clin Microbiol Rev. 2012;25:420–49. DOIPubMedGoogle Scholar
- Jagai JS, DeFlorio-Barker S, Lin CJ, Hilborn ED, Wade TJ. Sanitary sewer overflows and emergency room visits for gastrointestinal illness: analysis of Massachusetts data, 2006–2007. Environ Health Perspect. 2017;125:
117007 . DOIPubMedGoogle Scholar - Sauer EP, Vandewalle JL, Bootsma MJ, McLellan SL. Detection of the human specific Bacteroides genetic marker provides evidence of widespread sewage contamination of stormwater in the urban environment. Water Res. 2011;45:4081–91. DOIPubMedGoogle Scholar
- Wade TJ, Sandhu SK, Levy D, Lee S, LeChevallier MW, Katz L, et al. Did a severe flood in the Midwest cause an increase in the incidence of gastrointestinal symptoms? Am J Epidemiol. 2004;159:398–405. DOIPubMedGoogle Scholar
- Amaral-Zettler LA, Rocca JD, Lamontagne MG, Dennett MR, Gast RJ. Changes in microbial community structure in the wake of Hurricanes Katrina and Rita. Environ Sci Technol. 2008;42:9072–8. DOIPubMedGoogle Scholar
- Cho S, Hiott LM, Barrett JB, McMillan EA, House SL, Humayoun SB, et al. Prevalence and characterization of Escherichia coli isolated from the Upper Oconee Watershed in Northeast Georgia. PLoS One. 2018;13:
e0197005 . DOIPubMedGoogle Scholar - Beaudeau P, Schwartz J, Levin R. Drinking water quality and hospital admissions of elderly people for gastrointestinal illness in Eastern Massachusetts, 1998-2008. Water Res. 2014;52:188–98. DOIPubMedGoogle Scholar
- Den Boer JW, Coutinho RA, Yzerman EP, van der Sande MA. Use of surface water in drinking water production associated with municipal Legionnaires’ disease incidence. J Epidemiol Community Health. 2008;62:
e1 . DOIPubMedGoogle Scholar - Holvoet K, Sampers I, Seynnaeve M, Uyttendaele M. Relationships among hygiene indicators and enteric pathogens in irrigation water, soil and lettuce and the impact of climatic conditions on contamination in the lettuce primary production. Int J Food Microbiol. 2014;171:21–31. DOIPubMedGoogle Scholar
- Wade TJ, Lin CJ, Jagai JS, Hilborn ED. Flooding and emergency room visits for gastrointestinal illness in Massachusetts: a case-crossover study. PLoS One. 2014;9:
e110474 . DOIPubMedGoogle Scholar - Rangel JM, Sparling PH, Crowe C, Griffin PM, Swerdlow DL. Epidemiology of Escherichia coli O157:H7 outbreaks, United States, 1982-2002. Emerg Infect Dis. 2005;11:603–9. DOIPubMedGoogle Scholar
- Hrudey SE, Payment P, Huck PM, Gillham RW, Hrudey EJ. A fatal waterborne disease epidemic in Walkerton, Ontario: comparison with other waterborne outbreaks in the developed world. Water Sci Technol. 2003;47:7–14. DOIPubMedGoogle Scholar
- Bloom MS, Palumbo J, Saiyed N, Lauper U, Lin S. Food and waterborne disease in the greater New York City area following Hurricane Sandy in 2012. Disaster Med Public Health Prep. 2016;10:503–11. DOIPubMedGoogle Scholar
- Lefebvre M, Razakandrainibe R, Villena I, Favennec L, Costa D. Cryptosporidium-biofilm interactions: a review. Appl Environ Microbiol. 2021;87:e02483–20. DOIPubMedGoogle Scholar
- Berendt RF. Survival of Legionella pneumophila in aerosols: effect of relative humidity. J Infect Dis. 1980;141:689. DOIPubMedGoogle Scholar
- Karanis P, Kourenti C, Smith H. Waterborne transmission of protozoan parasites: a worldwide review of outbreaks and lessons learnt. J Water Health. 2007;5:1–38. DOIPubMedGoogle Scholar
- Kitajima M, Haramoto E, Iker BC, Gerba CP. Occurrence of Cryptosporidium, Giardia, and Cyclospora in influent and effluent water at wastewater treatment plants in Arizona. Sci Total Environ. 2014;484:129–36. DOIPubMedGoogle Scholar
- Breiman RF, Butler JC. Legionnaires’ disease: clinical, epidemiological, and public health perspectives. Semin Respir Infect. 1998;13:84–9.PubMedGoogle Scholar
- Lake IR, Bentham G, Kovats RS, Nichols GL. Effects of weather and river flow on cryptosporidiosis. J Water Health. 2005;3:469–74. DOIPubMedGoogle Scholar
- Reynolds KA, Mena KD, Gerba CP. Risk of waterborne illness via drinking water in the United States. Rev Environ Contam Toxicol. 2008;192:117–58.PubMedGoogle Scholar
- Sidhu JP, Hodgers L, Ahmed W, Chong MN, Toze S. Prevalence of human pathogens and indicators in stormwater runoff in Brisbane, Australia. Water Res. 2012;46:6652–60. DOIPubMedGoogle Scholar
- Collinet-Adler S, Ward HD. Cryptosporidiosis: environmental, therapeutic, and preventive challenges. Eur J Clin Microbiol Infect Dis. 2010;29:927–35. DOIPubMedGoogle Scholar
- Anderson GB, Ferreri J, Al-Hamdan M, Crosson W, Schumacher A, Guikema S, et al. Assessing United States county-level exposure for research on tropical cyclones and human health. Environ Health Perspect. 2020;128:
107009 . DOIPubMedGoogle Scholar - Kruk MC, Gibney EJ, Levinson DH, Squires M. A climatology of inland winds from tropical cyclones for the Eastern United States. J Appl Meteorol Climatol. 2010;49:1538–47. DOIGoogle Scholar
- Radcliff TA, Chu K, Der-Martirosian C, Dobalian A. A model for measuring ambulatory access to care recovery after disasters. J Am Board Fam Med. 2018;31:252–9. DOIPubMedGoogle Scholar
- Noe RS, Schnall AH, Wolkin AF, Podgornik MN, Wood AD, Spears J, et al. Disaster-related injuries and illnesses treated by American Red Cross disaster health services during Hurricanes Gustav and Ike. South Med J. 2013;106:102–8. DOIPubMedGoogle Scholar
- Armstrong BG, Gasparrini A, Tobias A. Conditional Poisson models: a flexible alternative to conditional logistic case cross-over analysis. BMC Med Res Methodol. 2014;14:122. DOIPubMedGoogle Scholar
- Acheson DWK. Food and waterborne illnesses. In: Schaechter M, ed. Encyclopedia of microbiology, 3rd edition. New York: Academic Press; 2009. p. 365–81.
- Ulrich N, Rosenberger A, Brislawn C, Wright J, Kessler C, Toole D, et al. Restructuring of the aquatic bacterial community by hydric dynamics associated with Superstorm Sandy. Appl Environ Microbiol. 2016;82:3525–36. DOIPubMedGoogle Scholar
- Brigmon RL, Turick CE, Knox AS, Burckhalter CE. The impact of storms on Legionella pneumophila in cooling tower water, implications for human health. Front Microbiol. 2020;11:
543589 . DOIPubMedGoogle Scholar - Falkinham JO III, Hilborn ED, Arduino MJ, Pruden A, Edwards MA. Epidemiology and ecology of opportunistic premise plumbing pathogens: Legionella pneumophila, Mycobacterium avium, and Pseudomonas aeruginosa. Environ Health Perspect. 2015;123:749–58. DOIPubMedGoogle Scholar
- Winfield MD, Groisman EA. Role of nonhost environments in the lifestyles of Salmonella and Escherichia coli. Appl Environ Microbiol. 2003;69:3687–94. DOIPubMedGoogle Scholar
- Wilkerson W, Archer WR. Epidemiology in Texas 1998 annual report. Austin: Texas Department of Health; 1999.
- Saulnier DD, Brolin Ribacke K, von Schreeb J. No calm after the storm: a systematic review of human health following flood and storm disasters. Prehosp Disaster Med. 2017;32:568–79. DOIPubMedGoogle Scholar
- Lane K, Charles-Guzman K, Wheeler K, Abid Z, Graber N, Matte T. Health effects of coastal storms and flooding in urban areas: a review and vulnerability assessment. J Environ Public Health. 2013;2013:
913064 . DOIPubMedGoogle Scholar - Carroll RJ, Ruppert D, Stefanski LA, Crainiceanu CM. Measurement error in nonlinear models: a modern perspective, second edition. New York: Chapman and Hall/CRC; 2006.
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