Hemoadsorption eliminates remdesivir from the circulation: implications for the treatment of COVID-19

Both antiviral treatment with remdesivir and hemoadsorption using a CytoSorb® adsorption device are applied in the treatment of severe COVID-19. The CytoSorb® adsorber consists of porous polymer beads that adsorb a broad range of molecules, including cytokines but also several therapeutic drugs. In...

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Main Authors: Biever, Paul (Author) , Staudacher, Dawid (Author) , Sommer, Michaela J. (Author) , Triebel, Hannah (Author) , Neukamm, Merja (Author) , Bode, Christoph (Author) , Supady, Alexander (Author) , Lother, Achim (Author)
Format: Article (Journal)
Language:English
Published: 12 March 2021
In: Pharmacology research & perspectives
Year: 2021, Volume: 9, Issue: 2, Pages: 1-4
ISSN:2052-1707
DOI:10.1002/prp2.743
Online Access:Verlag, lizenzpflichtig, Volltext: https://doi.org/10.1002/prp2.743
Verlag, lizenzpflichtig, Volltext: https://bpspubs.onlinelibrary.wiley.com/doi/abs/10.1002/prp2.743
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Author Notes:Paul Biever, Dawid L. Staudacher, Michaela J. Sommer, Hannah Triebel, Merja A. Neukamm, Christoph Bode, Alexander Supady, Achim Lother

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520 |a Both antiviral treatment with remdesivir and hemoadsorption using a CytoSorb® adsorption device are applied in the treatment of severe COVID-19. The CytoSorb® adsorber consists of porous polymer beads that adsorb a broad range of molecules, including cytokines but also several therapeutic drugs. In this study, we evaluated whether remdesivir and its main active metabolite GS-441524 would be adsorbed by CytoSorb®. Serum containing remdesivir or GS-441524 was circulated in a custom-made system containing a CytoSorb® device. Concentrations of remdesivir and GS-441524 before and after the adsorber were analyzed by liquid chromatography-tandem mass spectrometry. Measurements of remdesivir in the outgoing tube after the adsorber indicated almost complete removal of remdesivir by the device. In the reservoir, concentration of remdesivir showed an exponential decay and was not longer detectable after 60 mins. GS-441524 showed a similar exponential decay but, unlike remdesivir, it reached an adsorption-desorption equilibrium at 48 µg/L. Remdesivir and its main active metabolite GS-441524 are rapidly eliminated from the perfusate by the CytoSorb® adsorber device in vitro. This should be considered in patients for whom both therapies are indicated, and simultaneous application should be avoided. In general, plasma levels of therapeutic drugs should be closely monitored under concurrent CytoSorb® therapy. 
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