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.

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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