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Author Spotlight: Understanding and Detecting Environmental Antimicrobial Resistance by Combining Culture-Based Techniques and Genomics
Published on: July 19, 2024
Social and biological evaluation of antimicrobial resistance (SOBEAR) in rural India: a study protocol
Matrujyoti Pattnaik1, Ashish Kumar Nayak1, Sonam Karna1
1Model Rural Health Research Unit, ICMR-Regional Medical Research Centre, Cuttack, India.
Background:
Antimicrobial resistance (AMR) has been one of the biggest global health threats in recent years, mostly in low- and middle-income countries, which requires urgent research using a multidisciplinary research approach. The use of large quantities of antimicrobial drugs inappropriately for humans, poultry and agriculture has been recognized as a leading cause of antibiotic resistance and the predominance of drug-resistance pathogens in the environment. This protocol aims to describe the use/misuse of antibiotics (ABs) in the community and evaluate clinical samples from healthcare settings to detect genes associated with antimicrobial resistance.
Methods:
We will conduct a community-level survey in different villages of the Tigiria block to assess knowledge and awareness on ABs and AMR. We will conduct in-depth interviews (IDIs) with doctors, pharmacists, nurses and drug sellers, as well as focus group discussions (FGDs) with ASHA and ANM workers who are involved in antibiotic supplies to the community. Quantitative data from the community survey and qualitative data of IDIs and FGDs will be linked and analyzed using statistical modeling and iterative thematic content analysis. Specimens (stool, urine, blood and wound/pus) will be collected from clinically diagnosed patients of different healthcare centers of Tigiria block. The samples will be cultured for bacterial isolation and antibiotic sensitivity testing. Genomic DNA will be isolated from positive bacterial cultures and sequenced using PCR to evaluate high-threat multi-drug resistance organisms (MDROs), screening of plasmid-mediated quinolone resistance (PMQR) genes, antimicrobial genes responsible for MDR and quinolone resistance-determining regions (QRDRs).
Conclusion:
This is the community-based protocol to evaluate the knowledge, attitudes, awareness and practices regarding ABs and AMR. The study protocol establishes a foundation for evaluating population-based prevalence and risk factors for AMR and MDROs in rural areas of the Odisha state, India.
Insights
This study investigates antibiotic use and resistance in rural India, assessing community knowledge and detecting resistance genes in clinical samples to combat antimicrobial resistance (AMR).
Area of Science:
- Microbiology
- Public Health
- Genetics
Background:
- Antimicrobial resistance (AMR) is a significant global health threat, particularly in low- and middle-income countries.
- Inappropriate use of antimicrobial drugs in humans, agriculture, and poultry drives antibiotic resistance and the prevalence of resistant pathogens.
- Urgent, multidisciplinary research is needed to address AMR, focusing on community antibiotic use and environmental pathogen detection.
Purpose of the Study:
- To assess community knowledge, awareness, and practices regarding antibiotic use and AMR.
- To evaluate the misuse of antibiotics in the community.
- To detect antimicrobial resistance genes in clinical samples from healthcare settings.
Main Methods:
- Community surveys, in-depth interviews, and focus group discussions to gather data on antibiotic knowledge and practices.
- Collection and culture of clinical specimens (stool, urine, blood, wound/pus) for bacterial isolation and antibiotic sensitivity testing.
- Genomic DNA isolation, PCR sequencing to identify multi-drug resistance organisms (MDROs), plasmid-mediated quinolone resistance (PMQR) genes, and quinolone resistance-determining regions (QRDRs).
Main Results:
- This protocol outlines a community-based approach to evaluate antibiotic use and AMR.
- It aims to establish a foundation for understanding population-based prevalence and risk factors for AMR and MDROs in rural India.
- The study will link community-level data with clinical sample analysis to identify resistance mechanisms.
Conclusions:
- The study protocol provides a framework for evaluating knowledge, attitudes, awareness, and practices concerning antibiotics and AMR in a community setting.
- It lays the groundwork for assessing the prevalence of AMR and MDROs and associated risk factors in rural populations.
- This research is crucial for developing targeted interventions to combat antimicrobial resistance in underserved areas.
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