Quantifying type-specific reproduction numbers for nosocomial pathogens: evidence for heightened transmission of an

Ben S Cooper1, Theodore Kypraios, Rahul Batra

  • 1Centre for Clinical Vaccinology and Tropical Medicine, Nuffield Department of Clinical Medicine, University of Oxford, Oxford, United Kingdom. ben@tropmedres.ac

Insights

This study introduces a new method to measure how easily different methicillin-resistant Staphylococcus aureus (MRSA) strains spread in hospitals. It found that some MRSA clones are more transmissible than others, suggesting tailored infection control is needed.

Area of Science:

  • Infectious disease epidemiology
  • Clinical microbiology
  • Public health

Background:

  • Methicillin-resistant Staphylococcus aureus (MRSA) poses a significant threat in healthcare settings.
  • Variation in transmissibility among MRSA clones is suspected but poorly quantified.
  • Routine surveillance data is underutilized for assessing pathogen transmission dynamics.

Purpose of the Study:

  • To develop and validate a method for quantifying time-varying transmissibility of bacterial pathogen subtypes using routine surveillance data.
  • To assess the differential transmissibility of dominant MRSA clones in intensive care units (ICUs).
  • To evaluate the impact of infection control interventions on the transmission of specific MRSA subtypes.

Main Methods:

  • Adapted epidemic tree reconstruction methods to estimate time-varying reproduction numbers.
  • Utilized relative hazards instead of serial intervals for source attribution of transmission events.
  • Applied the method to retrospective MRSA surveillance data from UK ICUs, comparing endemic clones (ST22, ST36) with a pandemic strain (ST239-TW).

Main Results:

  • Demonstrated differential responses of MRSA clones to topical antiseptic interventions, with greater efficacy against endemic clones.
  • Identified consistently higher transmission risks from ST239-TW MRSA infections in one ICU compared to other clones.
  • Provided quantitative evidence supporting the enhanced transmissibility of a pandemic MRSA lineage.

Conclusions:

  • The developed method effectively quantifies subtype-specific transmissibility using routine surveillance data.
  • Hospital-acquired MRSA transmission dynamics vary significantly between clones.
  • Tailoring infection control strategies to specific MRSA subtypes, particularly pandemic lineages, is crucial for effective hospital epidemiology.