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Published on: June 5, 2020
Genotoxicity assessment of potentially mutagenic nucleoside analogues using ToxTracker®
Inger Brandsma1, Remco Derr1, Gaonan Zhang1
1Toxys B.V., De Limes 7, 2342 DH Oegstgeest, The Netherlands.
Abstract:
Nucleoside analogues have long been designed and tested in cancer treatment and against viral infections. However, several early compounds were shown to have mutagenic properties as a consequence of their mode-of-action. This limited their use, and several have been discontinued for lengthy treatments or altogether. Nonetheless, nucleoside analogues remain an attractive modality for virally driven diseases, of which many still are without proper treatment options. To quantitatively assess the genotoxic mode-of-action of a panel of nucleoside analogues, we applied the ToxTracker® reporter assay. Many of the early nucleoside analogues showed a genotoxic response. The more recently developed nucleoside analogues, Remdesivir and Molnupiravir that are currently being repurposed for Covid-19 treatment, had a different profile in ToxTracker and did not induce the genotoxicity reporters. Our analyses support the metabolite GS-441524 over the parent analogue Remdesivir. In contrast, Molnupiravir was devoid of clear cellular toxicity while its active metabolite (EIDD-1931) was cytotoxic and induced several biomarkers. Nucleoside analogues continue to be attractive treatment options upon viral infections. ToxTracker readily distinguished between the genotoxic analogues and those with different profiles and provides a basis for clustering and potency ranking, offering a comprehensive tool to assess the toxicity of nucleoside analogues.
Insights
Nucleoside analogues show varied genotoxicity. Newer antivirals like Remdesivir and Molnupiravir did not induce genotoxicity reporters in the ToxTracker assay, unlike older compounds.
Area of Science:
- Pharmacology
- Toxicology
- Virology
Background:
- Nucleoside analogues are vital in treating viral infections and cancers.
- Early analogues exhibited mutagenicity, limiting their therapeutic application.
- Novel nucleoside analogues are sought for effective antiviral therapies.
Purpose of the Study:
- To quantitatively assess the genotoxic potential of various nucleoside analogues.
- To evaluate the utility of the ToxTracker® reporter assay in distinguishing genotoxic profiles.
- To compare the genotoxicity of established and emerging nucleoside analogues.
Main Methods:
- Application of the ToxTracker® reporter assay to a panel of nucleoside analogues.
- Quantitative assessment of genotoxic responses induced by these compounds.
- Analysis of specific metabolites of Remdesivir and Molnupiravir for toxicity.
Main Results:
- Older nucleoside analogues demonstrated significant genotoxicity.
- Remdesivir and Molnupiravir exhibited distinct profiles, lacking genotoxicity induction in ToxTracker.
- The metabolite GS-441524 was supported over Remdesivir; Molnupiravir's active metabolite EIDD-1931 showed cytotoxicity.
Conclusions:
- ToxTracker® effectively differentiates genotoxic from non-genotoxic nucleoside analogues.
- Nucleoside analogues remain promising for viral disease treatment.
- The assay aids in clustering and ranking nucleoside analogue toxicity for drug development.

