OSWG Recommendations for Genotoxicity Testing of Novel Oligonucleotide-Based Therapeutics
Cindy L Berman1, Scott A Barros2, Sheila M Galloway3
11 Berman Consulting , Wayland, Massachusetts.
Abstract:
The Oligonucleotide Safety Working Group subcommittee on genotoxicity testing considers therapeutic oligonucleotides (ONs) unlikely to be genotoxic based on their properties and on the negative results for ONs tested to date. Nonetheless, the subcommittee believes that genotoxicity testing of new ONs is warranted because modified monomers could be liberated from a metabolized ON and incorporated into DNA and could hypothetically cause chain termination, miscoding, and/or faulty replication or repair. The standard test battery as described in Option 1 of International Conference on Harmonisation S2(R1) is generally adequate to assess such potential. However, for the in vitro assay for gene mutations, mammalian cells are considered more relevant than bacteria for most ONs due to their known responsiveness to nucleosides and their greater potential for ON uptake; on the other hand, bacterial assays may be more appropriate for ONs containing non-ON components. Testing is not recommended for ONs with only naturally occurring chemistries or for ONs with chemistries for which there is documented lack of genotoxicity in systems with demonstrated cellular uptake. Testing is recommended for ONs that contain non-natural chemical modifications and use of the complete drug product (including linkers, conjugates, and liposomes) is suggested to provide the most clinically relevant assessment. Documentation of uptake into cells comparable to those used for genotoxicity testing is proposed because intracellular exposure cannot be assumed for these large molecules. ONs could also hypothetically cause mutations through triple helix formation with genomic DNA and no tests are available for detection of such sequence-specific mutations across the entire genome. However, because the potential for triplex formation by therapeutic ONs is extremely low, this potential can be assessed adequately by sequence analysis.
Insights
Therapeutic oligonucleotides (ONs) are generally not genotoxic, but testing is recommended for new ONs with non-natural modifications. Standard genotoxicity tests are usually adequate, with mammalian cells preferred for in vitro gene mutation assays.
Area of Science:
- Pharmacology
- Toxicology
- Molecular Biology
Background:
- Therapeutic oligonucleotides (ONs) are novel drug candidates.
- Current data suggest ONs are unlikely to be genotoxic.
- Concerns exist regarding potential incorporation of liberated monomers into DNA.
Purpose of the Study:
- To evaluate the necessity and methods for genotoxicity testing of therapeutic oligonucleotides.
- To define conditions under which genotoxicity testing is warranted for new ONs.
- To recommend appropriate testing strategies for ONs.
Main Methods:
- Review of existing genotoxicity data for ONs.
- Consideration of International Conference on Harmonisation S2(R1) guidelines.
- Evaluation of in vitro and in vivo genotoxicity assay relevance for ONs.
- Assessment of cellular uptake and drug product components.
Main Results:
- Genotoxicity testing is recommended for ONs with non-natural chemical modifications.
- Standard genotoxicity test batteries are generally adequate.
- Mammalian cell-based in vitro gene mutation assays are preferred for most ONs.
- Testing of the complete drug product is advised for clinical relevance.
- Cellular uptake documentation is crucial for large molecules like ONs.
Conclusions:
- Genotoxicity testing for therapeutic oligonucleotides should be conducted on a case-by-case basis, focusing on non-natural modifications.
- Standard genotoxicity testing protocols, with specific considerations for cell type and drug product, are appropriate.
- Potential risks like monomer incorporation and triple helix formation are low but should be assessed.
- Ensuring adequate cellular uptake is critical for interpreting genotoxicity test results.
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