Publication

Therapeutic plasma exchange for COVID‐19‐associated hyperviscosity

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Last modified
  • 05/15/2025
Type of Material
Authors
    Alexander Truong, Emory UniversitySara Auld, Emory UniversityNicholas A. Barker, Emory St. Josephʼs HospitalSarah Friend, Emory UniversityAvanthika Wynn, Emory UniversityJason Cobb, Emory UniversityRoman Sniecinski, Emory UniversityChristin-Lauren Tanksley, Emory UniversityDerek M. Polly, Emory University Midtown HospitalManila Gaddh, Emory UniversityMichael Connor, Emory UniversityHirotomo Nakahara, Emory UniversityHarold Sullivan, Emory UniversityChristine Kempton, Emory UniversityJeannette Guarner, Emory UniversityAlexander Duncan, Emory UniversityCassandra Josephson, Emory UniversityJohn Roback, Emory UniversitySean Stowell, Emory UniversityCheryl Maier, Emory University
Language
  • English
Date
  • 2021-04-01
Publisher
  • Wiley
Publication Version
Copyright Statement
  • © 2020 AABB
Final Published Version (URL)
Title of Journal or Parent Work
Volume
  • 61
Issue
  • 4
Start Page
  • 1029
End Page
  • 1034
Grant/Funding Information
  • SCA is supported by NIH/NIAID K23 AI134182; CLM is supported by NIH/NHLBI K99 HL150626‐01.
Abstract
  • Background Recent data suggests an association between blood hyperviscosity and both propensity for thrombosis and disease severity in patients with COVID‐19. This raises the possibility that increased viscosity may contribute to endothelial damage and multiorgan failure in COVID‐19, and that therapeutic plasma exchange (TPE) to decrease viscosity may improve patient outcomes. Here we sought to share our experience using TPE in the first 6 patients treated for COVID‐19‐associated hyperviscosity. Study Design and Methods Six critically ill COVID‐19 patients with plasma viscosity levels ranging from 2.6 to 4.2 centipoise (cP; normal range, 1.4‐1.8 cP) underwent daily TPE for 2‐3 treatments. Results TPE decreased plasma viscosity in all six patients (Pre‐TPE median 3.75 cP, range 2.6‐4.2 cP; Post‐TPE median 1.6 cP, range 1.5‐1.9 cP). TPE also decreased fibrinogen levels in all five patients for whom results were available (Pre‐TPE median 739 mg/dL, range 601‐1188 mg/dL; Post‐TPE median 359 mg/dL, range 235‐461 mg/dL); D‐dimer levels in all six patients (Pre‐TPE median 5921 ng/mL, range 1134‐60 000 ng/mL; Post‐TPE median 4893 ng/mL, range 620‐7518 ng/mL); and CRP levels in five of six patients (Pre‐TPE median 292 mg/L, range 136‐329 mg/L; Post‐TPE median 84 mg/L, range 31‐211 mg/L). While the two sickest patients died, significant improvement in clinical status was observed in four of six patients shortly after TPE. Conclusions This series demonstrates the utility of TPE to rapidly correct increased blood viscosity in patients with COVID‐19‐associated hyperviscosity. Large randomized trials are needed to determine whether TPE may improve clinical outcomes for patients with COVID‐19.
Author Notes
  • Cheryl L. Maier, Department of Pathology and Laboratory Medicine, Emory University School of Medicine, 101 Woodruff Circle Room 2339, Atlanta, GA 30322, USA. cheryl.maier@emory.edu
Research Categories
  • Biology, Virology
  • Health Sciences, Public Health
  • Health Sciences, Rehabilitation and Therapy

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