Pathogen inactivation methods to prevent transfusion-transmissible arboviruses: A systematic review and meta-analysis

Ángel Giménez-Richarte1, María Isabel Ortiz de Salazar2, María-Paz Giménez-Richarte3

  • 1Blood Donation and Apheresis Unit, Transfusion Center of the Valencian Community, Alicante, Spain.

Abstract

Insights

Pathogen inactivation methods (PIMs) vary in effectiveness against arboviruses. Riboflavin + UV light (Mirasol) showed inferior viral load reduction compared to other PIMs for transfusion safety. Blood banks must prepare for diverse arbovirus threats.

Area of Science:

  • Transfusion Medicine
  • Virology
  • Public Health

Background:

  • Arboviruses pose a growing risk to transfusion safety.
  • Pathogen inactivation methods (PIMs) are crucial for mitigating transfusion-transmitted infections.
  • Assessing the efficacy of PIMs against various arboviruses is essential for blood safety.

Approach:

  • Systematic literature review and meta-analysis of 59 publications.
  • Evaluated main PIMs (amotosalen+UVA, riboflavin+UV, methylene blue+light, solvent detergent, amustaline, PEN110).
  • Assessed log reduction factor (LRF) for 17 arboviruses across different blood products.

Key Points:

  • For 13 arboviruses, including Dengue and Zika, at least one PIM achieved adequate viral load reduction (LRF ≥4).
  • Riboflavin + UV light (Mirasol) demonstrated inferior LRFs overall and for specific blood products.
  • Optimal PIMs varied by blood product: solvent/detergent for plasma, THERAFLEX/INTERCEPT for platelets, PEN110 for RBCs/whole blood.

Conclusions:

  • PIM efficacy differs significantly across arboviruses and blood products.
  • Riboflavin + UV light (Mirasol) is less effective than other PIMs.
  • Blood establishments need validated PIMs and logistical readiness for emerging arbovirus threats.