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Updated: May 27, 2026

An Affordable HIV-1 Drug Resistance Monitoring Method for Resource Limited Settings
Published on: March 30, 2014
Modeling the Impact and Cost of a Culture-Dependent Molecular Test for Antimicrobial Resistance in Resource-Limited
Joshua M Chevalier1, Megan A Hansen1, Benjamin Blumel2
1Department of Global Health, Amsterdam Institute for Global Health and Development, Amsterdam UMC, University of Amsterdam, Amsterdam, The Netherlands.
Background:
Limited diagnostic access in resource-limited settings contributes to poor health outcomes among bacterial sepsis patients and the spread of antimicrobial resistance (AMR). Molecular diagnostic profiling of AMR may enable faster targeting of antibiotic therapies, improving clinical outcomes, reducing AMR development, and saving costs.
Methods:
We modeled the impact of a culture-dependent molecular test for pathogen identification and resistance testing among hospitalized bloodstream infection patients to guide effective and cost-efficient implementation of these tools. We evaluated patient mortality, antibiotic use, hospital-associated infections, hospital days, and costs under the standard of care (empiric therapy, blood culture, phenotypic susceptibility testing) compared with molecular diagnostics by varying culture and susceptibility testing coverage, culture turnaround time, and AMR prevalence.
Results:
The greatest impact of the molecular test occurred with 100% diagnostic coverage, shorter culture turnaround time, and high AMR prevalence, reducing up to 6% of deaths (interquartile range [IQR], 0%-12.1%), 5% of hospital days (IQR, 0.1%-10.7%), and 21% of days on inappropriate antibiotic therapy (IQR, 18.2%-24.4%). The minimum cost per molecular test performed, offset by cost savings, ranged from $109 in India to $585 in South Africa across all modeled scenarios.
Conclusions:
In high AMR burden settings with blood culture infrastructure supporting fast turnaround times, a molecular test could improve health outcomes of bloodstream infection. Impact is limited by delayed turnaround times and the effectiveness of empiric therapy. Molecular diagnostics implemented at $100 or less can generate healthcare-system cost savings, supporting their adoption to improve health outcomes and reduce AMR while remaining cost-neutral.
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