Testing for viral penetration of non-latex surgical and examination gloves: a comparison of three methods

K P O'Connell1, M El-Masri, J B Broyles

  • 1University of Maryland School of Nursing, Department of Adult Health Nursing, 655 West Lombard St., Baltimore, MD 21201, USA.

Insights

No international standards exist for testing viral barrier properties of medical gloves. Placing bacteriophage inside gloves and using a stress protocol significantly improves testing sensitivity for barrier quality.

Area of Science:

  • Microbiology
  • Materials Science
  • Public Health

Background:

  • Current methods lack standardized microbiological approaches for assessing viral barrier integrity in medical and surgical gloves.
  • Ensuring effective viral barrier properties is critical for preventing pathogen transmission during medical procedures.

Purpose of the Study:

  • To compare three direct testing protocols for evaluating the viral barrier effectiveness of non-latex medical and surgical gloves.
  • To identify key factors that enhance the sensitivity and reliability of glove barrier testing.

Main Methods:

  • 1080 non-latex gloves (two surgical, two medical examination brands) were tested using three distinct protocols involving bacteriophage phiX174.
  • Protocols varied in bacteriophage placement (inside/outside glove) and test conditions (agitation, resting).
  • Gloves were tested under various conditions: direct from packaging, punctured, or subjected to a standardized stress protocol.

Main Results:

  • Significant differences in glove brand failure rates were observed only after applying the stress protocol.
  • Protocols with bacteriophage placed inside the gloves demonstrated higher sensitivity compared to external placement.
  • Glove brand and stress protocol significantly impacted viral barrier failure rates.

Conclusions:

  • Testing protocols that place bacteriophage inside gloves or apply pressure across the barrier enhance sensitivity.
  • A standardized stress protocol is crucial for differentiating the barrier quality of various glove brands.
  • Further research is needed to integrate bacteriophage testing with simulated glove use for industrial quality control.