Domestic animals in the household environment have the potential to affect a child's carriage of zoonotic enteric pathogens and risk of diarrhea. This study examines the risk factors associated with pediatric diarrhea and carriage of zoonotic enteric pathogens among children living in communities where smallholder livestock production is prevalent. We conducted an observational study of children younger than 5 years that included the analysis of child (n = 306) and animal (n = 480) fecal samples for Campylobacter spp., atypical enteropathogenic Escherichia coli, Shiga toxin-producing E. coli, Salmonella spp., Yersinia spp., Cryptosporidium parvum, and Giardia lamblia. Among these seven pathogens, Giardia was the most commonly identified pathogen among children and animals in the same household, most of which was found in child-dog pairs. Campylobacter spp. was also relatively common within households, particularly among child-chicken and child-guinea pig pairs. We used multivariable Poisson regression models to assess risk factors associated with a child being positive for at least one zoonotic enteric pathogen or having diarrhea during the last week. Children who interacted with domestic animals-a behavior reported by nearly three-quarters of households owning animals-were at an increased risk of colonization with at least one zoonotic enteric pathogen (prevalence ratio [PR] = 1.56, 95% CI: 1.00-2.42). The risk of diarrhea in the last seven days was elevated but not statistically significant (PR = 2.27, CI: 0.91, 5.67). Interventions that aim to reduce pediatric exposures to enteric pathogens will likely need to be incorporated with approaches that remove animal fecal contamination from the domestic environment and encourage behavior change aimed at reducing children's contact with animal feces through diverse exposure pathways.
Background: The spread of antibiotic-resistant bacteria may be driven by human-animal-environment interactions, especially in regions with limited restrictions on antibiotic use, widespread food animal production, and free-roaming domestic animals. In this study, we aimed to identify risk factors related to domestic animals, backyard food animals, and commercial food animal production in Ecuadorian communities. Methods & Findings: We conducted a repeated-measures study from 2018-2021 in 7 semi-rural parishes of Quito, Ecuador to identify determinants of third-generation cephalosporin-resistant E. coli (3GCR-EC) and extended-spectrum beta-lactamase E. coli (ESBL-EC) in children and domestic animals. We used multivariable log-binomial regression models to estimate relative risks (RR) of 3GCR-EC and ESBL-EC carriage. We collected 1,699 child fecal samples from 600 households and 1,871 animal fecal samples from 376 of the same households. Risk factors for 3GCR-EC included living within 5 km of more than 5 commercial food animal operations (RR: 1.36; 95% Confidence Interval: 1.16, 1.59), household pig ownership (1.23; 1.02, 1.48), child pet contact (1.23; 1.09, 1.39), and rarely/never washing hands after contact with animals (1.15; 0.98, 1.34). Risk factors for ESBL-EC were dog ownership (1.43; 1.00, 2.04), child pet contact (1.54; 1.10, 2.16), placing animal feces on household land/crops (1.63; 1.09, 2.46), and combined exposures to both household food animals and commercial food animal operation drainage paths (1.80; 0.94, 3.45). Conclusions: Policies and interventions that improve the safety of animal waste management in communities and in commercial food animal production operations may be necessary to curb the spread of resistant bacteria.
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