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Author Spotlight: Understanding and Detecting Environmental Antimicrobial Resistance by Combining Culture-Based Techniques and Genomics
Published on: July 19, 2024
Antimicrobial Resistance in Humans, Animals, Water and Household Environs in Rural Andean Peru: Exploring
Stella M Hartinger1,2,3, Maria Luisa Medina-Pizzali1, Gabriela Salmon-Mulanovich1,4
1School of Public Health and Administration, Universidad Peruana Cayetano Heredia, Lima 15102, Peru.
Abstract:
Antimicrobial resistance (AMR) is a global public health threat, especially for low and middle-income countries (LMIC) where the threat has not been fully identified. Our study aims to describe E. coli AMR in rural communities to expand our knowledge on AMR bacterial contamination. Specifically, we aim to identify and describe potential dissemination routes of AMR-carrying bacteria in humans (children's stools), community water sources (reservoirs and household sources), household environments (yard soil) and domestic animals of subsistence farmers in rural Andean areas. Our cross-sectional study was conducted in rural households in the region of Cajamarca, Peru. A total of 266 samples were collected. Thirty-four point six percent of reservoir water and 45% of household water source samples were positive for thermotolerant coliforms. Of the reservoir water samples, 92.8% were positive for E. coli, and 30.8% displayed resistance to at least one antibiotic, with the highest resistance to tetracycline. E. coli was found in 57.1% of the household water sources, 18.6% of these isolates were multidrug-resistant, and displayed the highest resistance to tetracycline (31.3%). Among samples from the children's drinking water source, 32.5% were positive for thermotolerant coliforms, and 57.1% of them were E. coli. One third of E. coli isolates were multidrug-resistant and displayed the highest AMR to tetracycline (41.6%) and ampicillin (25%). Thermotolerant coliforms were found in all the soil samples, 43.3% of the isolates were positive for E. coli, 34.3% of the E. coli isolates displayed AMR to at least one antibiotic, and displayed the highest AMR to tetracycline (25.7%). We determined thermotolerant coliforms in 97.5% of the child feces samples; 45.3% of them were E. coli, 15.9% displayed multidrug resistance, and displayed the highest resistance to ampicillin (34.1%). We identified thermotolerant coliforms in 67.5% of the animal feces samples. Of those, 38.7% were E. coli, and 37.7% were resistant to at least one antibiotic. For all the samples, the prevalence of resistance to at least one antibiotic in the E. coli and Klebsiella spp. isolates was almost 43% and the prevalence of MDR in the same isolates was nearly 9%, yet the latter nearly doubled (15.9%) in children's stools. Our results provide preliminary evidence for critical pathways and the interconnectedness of animal, human and environmental transmission but molecular analysis is needed to track dissemination routes properly.
Insights
Antimicrobial resistance (AMR) is a growing threat in low-income countries. This study found widespread E. coli contamination and resistance in rural Peru, highlighting interconnected human, animal, and environmental transmission routes.
Area of Science:
- Environmental microbiology
- Public health
- One Health
Background:
- Antimicrobial resistance (AMR) poses a significant global health challenge, particularly in low and middle-income countries (LMICs).
- Limited data exists on AMR bacterial contamination in rural communities within LMICs.
- Understanding AMR dissemination is crucial for developing effective public health interventions.
Purpose of the Study:
- To describe the prevalence and characteristics of antimicrobial-resistant *Escherichia coli* (*E. coli*) in rural Andean communities in Peru.
- To identify potential dissemination routes of AMR-carrying bacteria among humans, water sources, environments, and domestic animals.
- To expand knowledge on AMR bacterial contamination in understudied populations.
Main Methods:
- A cross-sectional study was conducted in rural households in Cajamarca, Peru.
- Samples were collected from children's stools, reservoir and household water, yard soil, and animal feces (n=266).
- Thermotolerant coliforms and *E. coli* were identified, and antimicrobial resistance patterns were analyzed.
Main Results:
- *E. coli* was detected in various environmental compartments, including 92.8% of reservoir water and 43.3% of soil samples.
- Antimicrobial resistance was prevalent, with *E. coli* isolates showing high resistance to tetracycline and ampicillin.
- Multidrug resistance (MDR) was observed in 15.9% of *E. coli* from children's stools, nearly double the overall MDR prevalence.
Conclusions:
- The study provides preliminary evidence of interconnected transmission pathways for AMR bacteria between animals, humans, and the environment in rural Peru.
- Water sources and soil act as significant reservoirs for AMR-carrying *E. coli*.
- Further molecular analyses are recommended to precisely track AMR dissemination routes and inform targeted interventions.
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