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.

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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