Mansour-Rezaei, S., Naser, G., Malekpour, A., & Karney, B. W. (2013). Contaminant intrusion in water distribution systems. Journal - American Water Works Association, 105(6), E278-E290. doi:10.5942/jawwa.2013.105.0061
Environmental Protection Agency – USEPA.Contaminant Candidate List (CCL) and regulatory determination. Draft Contaminant Candidate List 4‐CCL 4.2016.https://www.epa.gov/ccl/draft-contaminant-candidate-list-4-ccl-4. (Accessed January 2019).
Moreno, Y., & Ferrús, M. A. (2012). Specific Detection of CultivableHelicobacter pyloriCells from Wastewater Treatment Plants. Helicobacter, 17(5), 327-332. doi:10.1111/j.1523-5378.2012.00961.x
[+]
Mansour-Rezaei, S., Naser, G., Malekpour, A., & Karney, B. W. (2013). Contaminant intrusion in water distribution systems. Journal - American Water Works Association, 105(6), E278-E290. doi:10.5942/jawwa.2013.105.0061
Environmental Protection Agency – USEPA.Contaminant Candidate List (CCL) and regulatory determination. Draft Contaminant Candidate List 4‐CCL 4.2016.https://www.epa.gov/ccl/draft-contaminant-candidate-list-4-ccl-4. (Accessed January 2019).
Moreno, Y., & Ferrús, M. A. (2012). Specific Detection of CultivableHelicobacter pyloriCells from Wastewater Treatment Plants. Helicobacter, 17(5), 327-332. doi:10.1111/j.1523-5378.2012.00961.x
Aziz, R. K., Khalifa, M. M., & Sharaf, R. R. (2015). Contaminated water as a source of Helicobacter pylori infection: A review. Journal of Advanced Research, 6(4), 539-547. doi:10.1016/j.jare.2013.07.007
Hooi, J. K. Y., Lai, W. Y., Ng, W. K., Suen, M. M. Y., Underwood, F. E., Tanyingoh, D., … Ng, S. C. (2017). Global Prevalence of Helicobacter pylori Infection: Systematic Review and Meta-Analysis. Gastroenterology, 153(2), 420-429. doi:10.1053/j.gastro.2017.04.022
Voytek, M. A., Ashen, J. B., Kirshtein, J. D., Landa, E. R., & Fogarty, L. R. (2005). Detection of Helicobacter pylori and fecal indicator bacteria in five North American rivers. Journal of Water and Health, 3(4), 405-422. doi:10.2166/wh.2005.054
Boehnke, K. F., Eaton, K. A., Valdivieso, M., Baker, L. H., & Xi, C. (2015). Animal Model Reveals Potential Waterborne Transmission ofHelicobacter pyloriInfection. Helicobacter, 20(5), 326-333. doi:10.1111/hel.12216
Percival, S. L., & Suleman, L. (2014). Biofilms and Helicobacter pylori: Dissemination and persistence within the environment and host. World Journal of Gastrointestinal Pathophysiology, 5(3), 122. doi:10.4291/wjgp.v5.i3.122
Azevedo, N. F., Almeida, C., Cerqueira, L., Dias, S., Keevil, C. W., & Vieira, M. J. (2007). Coccoid Form of
Helicobacter pylori
as a Morphological Manifestation of Cell Adaptation to the Environment. Applied and Environmental Microbiology, 73(10), 3423-3427. doi:10.1128/aem.00047-07
Li, L., Mendis, N., Trigui, H., Oliver, J. D., & Faucher, S. P. (2014). The importance of the viable but non-culturable state in human bacterial pathogens. Frontiers in Microbiology, 5. doi:10.3389/fmicb.2014.00258
Hulten, K., Han, S., Enroth, H., Klein, P., Opekun, A., Gilman, R., … El-Zaatari, F. (1996). Helicobacter pylori in the drinking water in Peru. Gastroenterology, 110(4), 1031-1035. doi:10.1053/gast.1996.v110.pm8612990
Santiago, P., Moreno, Y., & Ferrús, M. A. (2015). Identification of ViableHelicobacter pyloriin Drinking Water Supplies by Cultural and Molecular Techniques. Helicobacter, 20(4), 252-259. doi:10.1111/hel.12205
Vesga, F.-J., Moreno, Y., Ferrús, M. A., Campos, C., & Trespalacios, A. A. (2018). Detection of Helicobacter pylori in drinking water treatment plants in Bogotá, Colombia, using cultural and molecular techniques. International Journal of Hygiene and Environmental Health, 221(4), 595-601. doi:10.1016/j.ijheh.2018.04.010
Moreno, Y., Ferrús, M. A., Alonso, J. L., Jiménez, A., & Hernández, J. (2003). Use of fluorescent in situ hybridization to evidence the presence of Helicobacter pylori in water. Water Research, 37(9), 2251-2256. doi:10.1016/s0043-1354(02)00624-3
Al-Sulami, A. A., Al-Edani, T. A. A., & Al-Abdula, A. A. (2012). Culture Method and PCR for the Detection ofHelicobacter pyloriin Drinking Water in Basrah Governorate Iraq. Gastroenterology Research and Practice, 2012, 1-5. doi:10.1155/2012/245167
Lu, Y., Redlinger, T. E., Avitia, R., Galindo, A., & Goodman, K. (2002). Isolation and Genotyping of
Helicobacter pylori
from Untreated Municipal Wastewater. Applied and Environmental Microbiology, 68(3), 1436-1439. doi:10.1128/aem.68.3.1436-1439.2002
Adams, B. L., Bates, T. C., & Oliver, J. D. (2003). Survival of
Helicobacter pylori
in a Natural Freshwater Environment. Applied and Environmental Microbiology, 69(12), 7462-7466. doi:10.1128/aem.69.12.7462-7466.2003
McDaniels, A. E., Wymer, L., Rankin, C., & Haugland, R. (2005). Evaluation of quantitative real time PCR for the measurement of Helicobacter pylori at low concentrations in drinking water. Water Research, 39(19), 4808-4816. doi:10.1016/j.watres.2005.09.030
Montero Campos, V., Hernández Soto, A., & Sandoval, J. C. (2014). Culture and Molecular Identification of <i>Helicobacter pylori</i> in Drinking Water from Areas of High and Low Incidence of Gastric Cancer in Costa Rica. Open Journal of Medical Microbiology, 04(04), 261-269. doi:10.4236/ojmm.2014.44030
Bai, X., Xi, C., & Wu, J. (2016). Survival of Helicobacter pylori in the wastewater treatment process and the receiving river in Michigan, USA. Journal of Water and Health, 14(4), 692-698. doi:10.2166/wh.2016.259
Rodríguez, D. C., Pino, N., & Peñuela, G. (2012). Microbiological quality indicators in waters of dairy farms: Detection of pathogens by PCR in real time. Science of The Total Environment, 427-428, 314-318. doi:10.1016/j.scitotenv.2012.03.052
Wu, J., Long, S. C., Das, D., & Dorner, S. M. (2011). Are microbial indicators and pathogens correlated? A statistical analysis of 40 years of research. Journal of Water and Health, 9(2), 265-278. doi:10.2166/wh.2011.117
Luby, S. P., Halder, A. K., Huda, T. M., Unicomb, L., Islam, M. S., Arnold, B. F., & Johnston, R. B. (2015). Microbiological Contamination of Drinking Water Associated with Subsequent Child Diarrhea. The American Journal of Tropical Medicine and Hygiene, 93(5), 904-911. doi:10.4269/ajtmh.15-0274
Levy, K., Hubbard, A. E., Nelson, K. L., & Eisenberg, J. N. S. (2009). Drivers of Water Quality Variability in Northern Coastal Ecuador. Environmental Science & Technology, 43(6), 1788-1797. doi:10.1021/es8022545
Holvoet, K., Sampers, I., Seynnaeve, M., & Uyttendaele, M. (2014). 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. International Journal of Food Microbiology, 171, 21-31. doi:10.1016/j.ijfoodmicro.2013.11.009
Castro-Ibáñez, I., Gil, M. I., Tudela, J. A., Ivanek, R., & Allende, A. (2015). Assessment of microbial risk factors and impact of meteorological conditions during production of baby spinach in the Southeast of Spain. Food Microbiology, 49, 173-181. doi:10.1016/j.fm.2015.02.004
Zhang, Y., Riley, L. K., Lin, M., & Hu, Z. (2012). Determination of low-density Escherichia coli and Helicobacter pylori suspensions in water. Water Research, 46(7), 2140-2148. doi:10.1016/j.watres.2012.01.030
Boehnke, K. F., Brewster, R. K., Sánchez, B. N., Valdivieso, M., Bussalleu, A., Guevara, M., … Xi, C. (2018). An assessment of drinking water contamination with
Helicobacter pylori
in Lima, Peru. Helicobacter, 23(2), e12462. doi:10.1111/hel.12462
Griffith, J. F., Weisberg, S. B., Arnold, B. F., Cao, Y., Schiff, K. C., & Colford, J. M. (2016). Epidemiologic evaluation of multiple alternate microbial water quality monitoring indicators at three California beaches. Water Research, 94, 371-381. doi:10.1016/j.watres.2016.02.036
Organización Panamericana de la Salud ‐ OPS/ WHO.Procedimientos para la búsqueda de Vibrio cholerae en muestras ambientales;2010 http://www.paho.org/hq/dmdocuments/2010/Muestreo_ambiental_V_cholerae.pdf?ua=1. (Accessed May 2015).
Enroth, H., & Engstrand, L. (1995). Immunomagnetic separation and PCR for detection of Helicobacter pylori in water and stool specimens. Journal of Clinical Microbiology, 33(8), 2162-2165. doi:10.1128/jcm.33.8.2162-2165.1995
Nilsson, H.-O., Blom, J., Al-Soud, W. A., Ljungh, A., Andersen, L. P., & Wadström, T. (2002). Effect of Cold Starvation, Acid Stress, and Nutrients on Metabolic Activity of
Helicobacter pylori. Applied and Environmental Microbiology, 68(1), 11-19. doi:10.1128/aem.68.1.11-19.2002
Foegeding, N., Caston, R., McClain, M., Ohi, M., & Cover, T. (2016). An Overview of Helicobacter pylori VacA Toxin Biology. Toxins, 8(6), 173. doi:10.3390/toxins8060173
Altschul, S. (1997). Gapped BLAST and PSI-BLAST: a new generation of protein database search programs. Nucleic Acids Research, 25(17), 3389-3402. doi:10.1093/nar/25.17.3389
Organization for Standardization (ISO): 9308–1.Water Quality‐ Enumeration ofEscherichia coliand Coliform Bacteria – Part 1: Membrane Filtration Method for Water with low bacteria background flora. International; flora.2014.
International Organization for Standardization (ISO): 6461–2.Water Quality‐ Detection and Enumeration of the Spores of Sulfite‐Reducing Anaerobes (Clostridia) – Part 2: Method by Membrane Filtration.1986.
GonzálezJA.Manual básico SPSS. Universidad de Talca. Talca Chile.2009 P. 70.
de Salud Ministerio.Resolution 2115 of the 2007. Web site:http://www.minsalud.gov.co/. (Accessed May 2018).
Environmental Protection Agency – USEPA.Contaminant Candidate List (CCL) and Regulatory Determination. Draft Contaminant Candidate List 1‐CCL 1;2004.https://www.epa.gov/ccl/draft-contaminant-candidate-list-1-ccl-1#microbial-list. (Accessed June 2018).
Ryan, M., Hamilton, K., Hamilton, M., & Haas, C. N. (2014). Evaluating the Potential for aHelicobacter pyloriDrinking Water Guideline. Risk Analysis, 34(9), 1651-1662. doi:10.1111/risa.12190
Bahrami, A. R., Rahimi, E., & Ghasemian Safaei, H. (2013). Detection ofHelicobacter pyloriin City Water, Dental Units’ Water, and Bottled Mineral Water in Isfahan, Iran. The Scientific World Journal, 2013, 1-5. doi:10.1155/2013/280510
Baker, K. H., & Hegarty, J. P. (2001). Presence of Helicobacter pylori in Drinking Water is Associated with Clinical Infection. Scandinavian Journal of Infectious Diseases, 33(10), 744-746. doi:10.1080/003655401317074536
Mazari-Hiriart, M., López-Vidal, Y., & Calva, J. J. (2001). Helicobacter pylori in water systems for human use in Mexico City. Water Science and Technology, 43(12), 93-98. doi:10.2166/wst.2001.0718
Travis, P. B., Goodman, K. J., O’Rourke, K. M., Groves, F. D., Sinha, D., Nicholas, J. S., … Mena, K. D. (2009). The association of drinking water quality and sewage disposal with Helicobacter pylori incidence in infants: the potential role of water-borne transmission. Journal of Water and Health, 8(1), 192-203. doi:10.2166/wh.2009.040
Twing, K. I., Kirchman, D. L., & Campbell, B. J. (2011). Temporal study of Helicobacter pylori presence in coastal freshwater, estuary and marine waters. Water Research, 45(4), 1897-1905. doi:10.1016/j.watres.2010.12.013
FERNANDEZ, H., OTTH, L., & WILSON, M. (2003). Isolation of thermotolerant species of Campylobacter from river water using two collection methods. Archivos de medicina veterinaria, 35(1). doi:10.4067/s0301-732x2003000100010
McEgan, R., Rodrigues, C. A. P., Sbodio, A., Suslow, T. V., Goodridge, L. D., & Danyluk, M. D. (2012). Detection of Salmonella
spp. from large volumes of water by modified Moore swabs and tangential flow filtration. Letters in Applied Microbiology, 56(2), 88-94. doi:10.1111/lam.12016
Araujo BoiraR HanninenML.Helicobacter pylori. In: Rose JB Jiménez‐Cisneros B (eds). Global Water Pathogen Project. (A. Pruden N. Ashbolt and J. Miller (eds) Part 3 Bacteria). Michigan State University. E. Lansing MI: UNESCO:2017.http://www.waterpathogens.orghttp://www.waterpathogens.org/book/helicobacter-pylorihttps://doi.org/10.14321/waterpathogens.25.
Ferguson, C. M., Coote, B. G., Ashbolt, N. J., & Stevenson, I. M. (1996). Relationships between indicators, pathogens and water quality in an estuarine system. Water Research, 30(9), 2045-2054. doi:10.1016/0043-1354(96)00079-6
Harwood, V. J., Levine, A. D., Scott, T. M., Chivukula, V., Lukasik, J., Farrah, S. R., & Rose, J. B. (2005). Validity of the Indicator Organism Paradigm for Pathogen Reduction in Reclaimed Water and Public Health Protection. Applied and Environmental Microbiology, 71(6), 3163-3170. doi:10.1128/aem.71.6.3163-3170.2005
Cheng, H.-W. A., Broaders, M. A., Lucy, F. E., Mastitsky, S. E., & Graczyk, T. K. (2012). Determining potential indicators of Cryptosporidium oocysts throughout the wastewater treatment process. Water Science and Technology, 65(5), 875-882. doi:10.2166/wst.2012.918
Nayak, A. K., & Rose, J. B. (2007). Detection of Helicobacter pylori in sewage and water using a new quantitative PCR method with SYBR® green. Journal of Applied Microbiology, 103(5), 1931-1941. doi:10.1111/j.1365-2672.2007.03435.x
Saito, N., Konishi, K., Sato, F., Kato, M., Takeda, H., Sugiyama, T., & Asaka, M. (2003). Plural Transformation-Processes from Spiral to Coccoid Helicobacter pylori and its Viability. Journal of Infection, 46(1), 49-55. doi:10.1053/jinf.2002.1047
Ministerio del Medio Ambiente.Decree 1594 of the 1984. Web site.http://www.minambiente.gov.co/. (Accessed May 2018).
Bragança, S. M., Azevedo, N. F., Simões, L. C., Keevil, C. W., & Vieira, M. J. (2007). Use of fluorescent in situ hybridisation for the visualisation of Helicobacter pylori in real drinking water biofilms. Water Science and Technology, 55(8-9), 387-393. doi:10.2166/wst.2007.282
Hegarty, J. P., Dowd, M. T., & Baker, K. H. (1999). Occurrence of Helicobacter pylori in surface water in the United States. Journal of Applied Microbiology, 87(5), 697-701. doi:10.1046/j.1365-2672.1999.00912.x
[-]