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Antibiotic Restriction Might Facilitate the Emergence of Multi-drug Resistance
Uri Obolski1, Gideon Y Stein2, Lilach Hadany1
1Department of Molecular Biology and Ecology of Plants, Tel-Aviv University, Tel Aviv, Israel.
Abstract:
High antibiotic resistance frequencies have become a major public health issue. The decrease in new antibiotics' production, combined with increasing frequencies of multi-drug resistant (MDR) bacteria, cause substantial limitations in treatment options for some bacterial infections. To diminish overall resistance, and especially the occurrence of bacteria that are resistant to all antibiotics, certain drugs are deliberately scarcely used--mainly when other options are exhausted. We use a mathematical model to explore the efficiency of such antibiotic restrictions. We assume two commonly used drugs and one restricted drug. The model is examined for the mixing strategy of antibiotic prescription, in which one of the drugs is randomly assigned to each incoming patient. Data obtained from Rabin medical center, Israel, is used to estimate realistic single and double antibiotic resistance frequencies in incoming patients. We find that broad usage of the hitherto restricted drug can reduce the number of incorrectly treated patients, and reduce the spread of bacteria resistant to both common antibiotics. Such double resistant infections are often eventually treated with the restricted drug, and therefore are prone to become resistant to all three antibiotics. Thus, counterintuitively, a broader usage of a formerly restricted drug can sometimes lead to a decrease in the emergence of bacteria resistant to all drugs. We recommend re-examining restriction of specific drugs, when multiple resistance to the relevant alternative drugs already exists.
Insights
Restricting antibiotic use can worsen multi-drug resistance. Counterintuitively, broader use of a restricted drug may decrease the emergence of bacteria resistant to all antibiotics, especially when other options fail.
Area of Science:
- Microbiology
- Mathematical Biology
- Public Health
Background:
- High antibiotic resistance frequencies pose a significant public health challenge.
- Decreasing new antibiotic production and rising multi-drug resistant (MDR) bacteria limit treatment options.
Purpose of the Study:
- To mathematically model and explore the efficiency of antibiotic restrictions in combating resistance.
- To investigate the impact of a mixing strategy for antibiotic prescription.
Main Methods:
- Utilized a mathematical model with two common and one restricted antibiotic.
- Examined a strategy of random antibiotic assignment per patient.
- Incorporated real-world data on antibiotic resistance frequencies from Rabin Medical Center, Israel.
Main Results:
- Broadened usage of a restricted drug can reduce incorrectly treated patients.
- Increased use of the restricted drug can decrease the spread of bacteria resistant to common antibiotics.
- Counterintuitively, wider use of a formerly restricted drug may decrease the emergence of pan-resistant bacteria.
Conclusions:
- Re-evaluating restrictions on specific antibiotics is recommended, particularly when multiple drug resistance is prevalent.
- Current antibiotic restriction strategies may inadvertently promote pan-resistance.
- Optimizing antibiotic stewardship requires considering the complex dynamics of resistance emergence.
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