Hospital wastewater-based antimicrobial resistance epidemiology: a scoping review

Abstract Introduction: Wastewater-based epidemiology (WBE) offers pooled biological samples of defined populations, complementing clinical surveillance for infectious diseases. Hospitals are hotspots for antimicrobial resistance (AMR). We performed a scoping review assessing hospital wastewater for AMR monitoring. Methods: We searched Medline, Embase, Biosis, Web of Science, and biorxiv.org from inception to May 5, 2026, for studies using hospital wastewater to monitor AMR. The primary outcome was AMR detection and concordance with traditional surveillance. Concordance was reported by resistance class, and reported as strain- or gene-level, as discordant, or as not assessed. Secondary outcomes included sampling methods, and laboratory techniques. Results: Of 4,695 screened studies, 36 from 22 countries met inclusion criteria (high-income 53%, upper-middle-income 42%, and lower-middle-income 5%). Traditional surveillance used mostly routine diagnostics (58%); only 39% of studies aligned temporally with wastewater sampling. Extended-Spectrum Beta-Lactamase-producing organisms showed strain-level concordance in 2/6 studies, and gene-level concordance in 4/6; carbapenem resistance showed strain-level concordance in 2/9 and gene-level concordance in 4/9. Concordance was present for vancomycin-resistant enterococci (2/3), while inconsistent for Methicillin-resistant Staphylococcus aureus (0/2) and Candida auris (1/2) . One study quantified correlation statistically, finding strong association (Spearman’s rho = .88). Wastewater sampling methods included grab sampling (39%), composite sampling (36%), and was unreported (25%). Most studies combined culture-based (89%) and molecular methods (PCR 75%, WGS 42%, metagenomics 17%), mostly targeting Gram-negatives (83%). Conclusion: Hospital WBE showed variable concordance with traditional surveillance, but methodological heterogeneity and limited temporal alignment constrain comparisons. Standardized frameworks and patient-level studies, particularly from low- and middle-income countries, are needed.

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Journal
Infection Control and Hospital Epidemiology
Published
2026-10-09
DOI
https://doi.org/10.1017/ice.2026.10558
Primary Topic
Pharmaceutical and Antibiotic Environmental Impacts
Type
article
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article

Hospital wastewater-based antimicrobial resistance epidemiology: a scoping review

Guillermo Rodríguez-Nava, Evans M. Whitaker, José Luis Paredes, Sheena Conforti et al.
Infection Control and Hospital Epidemiology
Pharmaceutical and Antibiotic Environmental Impacts
article

Hospital wastewater-based antimicrobial resistance epidemiology: a scoping review

Guillermo Rodríguez-Nava, Evans M. Whitaker, José Luis Paredes, Sheena Conforti, Abdulrahman AlSweed, Mindy Marie Sampson, Eugenia Miranti, Alexandria B B Boehm, Alessandro Zulli, Wajeeha Tariq, Alexandre Rodrigues Marra, Erika Paola Viana Cardenas, Nathan B. Pincus, Jenna M Wick, Mingjun Jiang, Jorge Luis Salinas
article en

Abstract

Abstract Introduction: Wastewater-based epidemiology (WBE) offers pooled biological samples of defined populations, complementing clinical surveillance for infectious diseases. Hospitals are hotspots for antimicrobial resistance (AMR). We performed a scoping review assessing hospital wastewater for AMR monitoring. Methods: We searched Medline, Embase, Biosis, Web of Science, and biorxiv.org from inception to May 5, 2026, for studies using hospital wastewater to monitor AMR. The primary outcome was AMR detection and concordance with traditional surveillance. Concordance was reported by resistance class, and reported as strain- or gene-level, as discordant, or as not assessed. Secondary outcomes included sampling methods, and laboratory techniques. Results: Of 4,695 screened studies, 36 from 22 countries met inclusion criteria (high-income 53%, upper-middle-income 42%, and lower-middle-income 5%). Traditional surveillance used mostly routine diagnostics (58%); only 39% of studies aligned temporally with wastewater sampling. Extended-Spectrum Beta-Lactamase-producing organisms showed strain-level concordance in 2/6 studies, and gene-level concordance in 4/6; carbapenem resistance showed strain-level concordance in 2/9 and gene-level concordance in 4/9. Concordance was present for vancomycin-resistant enterococci (2/3), while inconsistent for Methicillin-resistant Staphylococcus aureus (0/2) and Candida auris (1/2) . One study quantified correlation statistically, finding strong association (Spearman’s rho = .88). Wastewater sampling methods included grab sampling (39%), composite sampling (36%), and was unreported (25%). Most studies combined culture-based (89%) and molecular methods (PCR 75%, WGS 42%, metagenomics 17%), mostly targeting Gram-negatives (83%). Conclusion: Hospital WBE showed variable concordance with traditional surveillance, but methodological heterogeneity and limited temporal alignment constrain comparisons. Standardized frameworks and patient-level studies, particularly from low- and middle-income countries, are needed.

Infection Control and Hospital Epidemiology
University of Iowa (US), Washington University in St. Louis (US), Hospital Israelita Albert Einstein (BR), King Faisal Specialist Hospital & Research Centre (SA), Denver Health Medical Center (US), Stanford Health Care (US), Advocate Illinois Masonic Medical Center (US), Stanford Medicine (US), University of Colorado Anschutz Medical Campus (US), Stanford University (US)
Openalex Percentile: Top 24%
Pharmaceutical and Antibiotic Environmental Impacts
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