Hepatitis E virus (HEV) is responsible for acute hepatitis in humans, through foodborne, zoonotic, and waterborne transmission routes. This study aimed to assess the prevalence of HEV in water matrices. Six categories were defined: untreated and treated wastewater, surface water (river, lake, and seawater), drinking water, groundwater, and other water environments (irrigation water, grey water, reservoir water, flood water, and effluent of pig slaughterhouse). We searched PubMed, Web of Science, Global Index Medicus, and Excerpta Medica Database. Study selection and data extraction were performed by at least two independent investigators. Heterogeneity (I-2) was assessed using the chi(2) test on the Cochran Q statistic and H parameter. Sources of heterogeneity were explored by subgroup analysis. This study is registered with PROSPERO, number CRD42021289116. We included 87 prevalence studies from 58 papers, 66.4% of which performed in Europe. The overall prevalence of HEV in water was 9.8% (95% CI 6.4-13.7). The prevalence was higher in untreated wastewater (15.1%) and lower in treated wastewater (3.8%) and in drinking water (4.7%). In surface water, prevalence was 7.4%, and in groundwater, the percentage of positive samples, from only one study available, was 8.3%. Overall, only 36.8% of the studies reported the genotype of HEV, with genotype 3 (HEV-3) prevalent (168 samples), followed by HEV-1 (148 sample), and HEV-4 (2 samples). High-income countries were the most represented with 59/87 studies (67.8%), while only 3/87 (3.5%) of the studies were performed in low-income countries. The overall prevalence obtained of this study was generally higher in industrialized countries. Risk of bias was low in 14.9% of the studies and moderate in 85.1%. The results of this review showed the occurrence of HEV in different waters environments also in industrialized countries with sanitation and safe water supplies. While HEV transmission to humans through water has been widely demonstrated in developing countries, it is an issue still pending in industrialized countries. Better knowledge on the source of pollution, occurrence, survival in water, and removal by water treatment is needed to unravel this transmission path.

Hepatitis E Virus in Water Environments: A Systematic Review and Meta-analysis / Takuissu, G. R.; Kenmoe, S.; Ndip, L.; Ebogo-Belobo, J. T.; Kengne-Nd('(e)), C.; Mbaga, D. S.; Bowo-Ngandji, A.; Oyono, M. G.; Kenfack-Momo, R.; Tchatchouang, S.; Kenfack-Zanguim, J.; Lontuo Fogang, R.; Menkem, E. Zeuko'o.; Kame-Ngasse, G. I.; Magoudjou-Pekam, J. N.; Nkie Esemu, S.; Veneri, C.; Mancini, P.; Bonanno Ferraro, G.; Iaconelli, M.; Suffredini, E.; La Rosa, G.. - In: FOOD AND ENVIRONMENTAL VIROLOGY. - ISSN 1867-0334. - 14:3(2022), pp. 223-235. [10.1007/s12560-022-09530-3]

Hepatitis E Virus in Water Environments: A Systematic Review and Meta-analysis

C. Veneri;P. Mancini;
2022

Abstract

Hepatitis E virus (HEV) is responsible for acute hepatitis in humans, through foodborne, zoonotic, and waterborne transmission routes. This study aimed to assess the prevalence of HEV in water matrices. Six categories were defined: untreated and treated wastewater, surface water (river, lake, and seawater), drinking water, groundwater, and other water environments (irrigation water, grey water, reservoir water, flood water, and effluent of pig slaughterhouse). We searched PubMed, Web of Science, Global Index Medicus, and Excerpta Medica Database. Study selection and data extraction were performed by at least two independent investigators. Heterogeneity (I-2) was assessed using the chi(2) test on the Cochran Q statistic and H parameter. Sources of heterogeneity were explored by subgroup analysis. This study is registered with PROSPERO, number CRD42021289116. We included 87 prevalence studies from 58 papers, 66.4% of which performed in Europe. The overall prevalence of HEV in water was 9.8% (95% CI 6.4-13.7). The prevalence was higher in untreated wastewater (15.1%) and lower in treated wastewater (3.8%) and in drinking water (4.7%). In surface water, prevalence was 7.4%, and in groundwater, the percentage of positive samples, from only one study available, was 8.3%. Overall, only 36.8% of the studies reported the genotype of HEV, with genotype 3 (HEV-3) prevalent (168 samples), followed by HEV-1 (148 sample), and HEV-4 (2 samples). High-income countries were the most represented with 59/87 studies (67.8%), while only 3/87 (3.5%) of the studies were performed in low-income countries. The overall prevalence obtained of this study was generally higher in industrialized countries. Risk of bias was low in 14.9% of the studies and moderate in 85.1%. The results of this review showed the occurrence of HEV in different waters environments also in industrialized countries with sanitation and safe water supplies. While HEV transmission to humans through water has been widely demonstrated in developing countries, it is an issue still pending in industrialized countries. Better knowledge on the source of pollution, occurrence, survival in water, and removal by water treatment is needed to unravel this transmission path.
2022
Hepatitis E; HEV; Water matrices; Prevalence
01 Pubblicazione su rivista::01a Articolo in rivista
Hepatitis E Virus in Water Environments: A Systematic Review and Meta-analysis / Takuissu, G. R.; Kenmoe, S.; Ndip, L.; Ebogo-Belobo, J. T.; Kengne-Nd('(e)), C.; Mbaga, D. S.; Bowo-Ngandji, A.; Oyono, M. G.; Kenfack-Momo, R.; Tchatchouang, S.; Kenfack-Zanguim, J.; Lontuo Fogang, R.; Menkem, E. Zeuko'o.; Kame-Ngasse, G. I.; Magoudjou-Pekam, J. N.; Nkie Esemu, S.; Veneri, C.; Mancini, P.; Bonanno Ferraro, G.; Iaconelli, M.; Suffredini, E.; La Rosa, G.. - In: FOOD AND ENVIRONMENTAL VIROLOGY. - ISSN 1867-0334. - 14:3(2022), pp. 223-235. [10.1007/s12560-022-09530-3]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1696665
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