<p>The release of inadequately treated wastewater, containing human viruses, into the water environment or agricultural use represent a major problem in public health. In this study, SYBR Green-based real-time polymerase chain (qPCR) was applied to evaluate the prevalence of human polyomavirus (HPyV), papillomavirus (HPV), hepatitis A virus (HAV), and hepatitis E virus (HEV) in urban sewage and among children with acute gastroenteritis. The seasonal distribution in wastewater and viral removal by wastewater treatment process were also evaluated, over the 2&#xa0;year sampling period. HPyV, HPV, HAV, and HEV were detected in 68%, 39.6% 42.4%, and 33.3% of the raw sewage, respectively, with highest incidence in winter season. In treated sewage samples, HPyV, HPV, HAV, and HEV were detected in 21%, 9.4%, 18.7%, and 0%, respectively. Furthermore, among the 200 diarrheal stool samples, HPyV, HPV, HAV, and HEV were detected in 72.5%, 50%, 13%, and 5%, respectively. HPyV was more prevalent in both environmental and clinical samples. The mean concentration of these viruses in raw sewage, treated sewage, and stool samples was 3.62 × 10<sup>6</sup>&#xa0;GC/ml, 4.03 × 10<sup>3</sup>&#xa0;GC/ml, and 4.05 × 10<sup>6</sup>&#xa0;GC/g, respectively. Examination of&#xa0;wastewater treatment process&#xa0;efficiency based on mean concentration values at entry and exit observed an overall&#xa0;reduction&#xa0;of&#xa0;49.5%, 47.9%, 41.2%, 100%, for HPyV, HPV, HAV, and HEV, respectively. This study showed the benefit of environmental monitoring as an additional tool to investigate the epidemiology of these viruses circulating in a given community.</p>

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Wastewater and Clinical Based Epidemiology for Viral Surveillance in the Nile Delta of Egypt

  • Mohamed Nasr Fathi Shaheen,
  • Nehal Ismail Ahmed,
  • Elmahdy Mohamed Elmahdy

摘要

The release of inadequately treated wastewater, containing human viruses, into the water environment or agricultural use represent a major problem in public health. In this study, SYBR Green-based real-time polymerase chain (qPCR) was applied to evaluate the prevalence of human polyomavirus (HPyV), papillomavirus (HPV), hepatitis A virus (HAV), and hepatitis E virus (HEV) in urban sewage and among children with acute gastroenteritis. The seasonal distribution in wastewater and viral removal by wastewater treatment process were also evaluated, over the 2 year sampling period. HPyV, HPV, HAV, and HEV were detected in 68%, 39.6% 42.4%, and 33.3% of the raw sewage, respectively, with highest incidence in winter season. In treated sewage samples, HPyV, HPV, HAV, and HEV were detected in 21%, 9.4%, 18.7%, and 0%, respectively. Furthermore, among the 200 diarrheal stool samples, HPyV, HPV, HAV, and HEV were detected in 72.5%, 50%, 13%, and 5%, respectively. HPyV was more prevalent in both environmental and clinical samples. The mean concentration of these viruses in raw sewage, treated sewage, and stool samples was 3.62 × 106 GC/ml, 4.03 × 103 GC/ml, and 4.05 × 106 GC/g, respectively. Examination of wastewater treatment process efficiency based on mean concentration values at entry and exit observed an overall reduction of 49.5%, 47.9%, 41.2%, 100%, for HPyV, HPV, HAV, and HEV, respectively. This study showed the benefit of environmental monitoring as an additional tool to investigate the epidemiology of these viruses circulating in a given community.