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Scientific Review of the Proarrhythmic Risks of Oligonucleotide Therapeutics: Are Dedicated ICH S7B/E14 Studies
Yusheng Qu1, Kim A Henderson1, Tod A Harper1
1Amgen Research, Translational Safety & Bioanalytical Sciences, Amgen Inc., Thousand Oaks, California, USA.
Abstract:
Oligonucleotide therapeutics (ONTs) represent a new modality with unique pharmacological and chemical properties that modulate gene expression with a high degree of target specificity mediated by complementary Watson-Crick base pair hybridization. To date, the proarrhythmic assessment of ONTs has been influenced by International Conference on Harmonization (ICH) E14 and S7B guidance. To document current hERG/QTc evaluation practices, we reviewed US Food and Drug Administration (FDA) and the European Medicines Agency (EMA) Approval Packages (source: PharmaPendium.com) and collated preclinical and clinical studies for 17 marketed ONTs. In addition, clinical QTc data from 12 investigational ONTs were obtained from the literature. Of the marketed ONTs, eight were tested in the hERG assay with no inhibitory effect identified at the top concentration (range: 34-3,000 μM) tested. Fourteen of the ONTs were evaluated in nonhuman primate cardiovascular studies with 11 of them in dedicated telemetry studies. No effect on QTc intervals were observed (at high exposure multiples) in all studies. Clinically, four ONTs were evaluated in TQT studies; an additional six ONTs were assessed by concentration-QTc interval analysis, and six by routine safety electrocardiogram monitoring. None of the clinical studies identified a QTc prolongation risk; the same was true for the 12 investigational ONTs. A search of the FDA Adverse Event Database indicated no association between approved ONTs and proarrhythmias. Overall, the collective weight of evidence from 29 ONTs demonstrate no clinical proarrhythmic risk based on data obtained from ICH S7B/E14 studies. Thus, new ONTs may benefit from reduced testing strategies because they have no proarrhythmic risk, a similar cardiac safety profile as monoclonal antibodies, proteins, and peptides.
Insights
Oligonucleotide therapeutics (ONTs) show no proarrhythmic risk in cardiac safety studies. This suggests ONTs may require reduced cardiac safety testing, similar to biologics like monoclonal antibodies.
Area of Science:
- Pharmacology and Toxicology
- Cardiovascular Safety Assessment
- Gene Therapy Modalities
Background:
- Oligonucleotide therapeutics (ONTs) are a novel drug class modulating gene expression via Watson-Crick hybridization.
- Current proarrhythmic assessment of ONTs follows International Conference on Harmonization (ICH) E14 and S7B guidelines.
- Evaluating hERG/QTc practices for ONTs is crucial for understanding their cardiac safety profile.
Purpose of the Study:
- To document current hERG/QTc evaluation practices for oligonucleotide therapeutics.
- To assess the proarrhythmic risk associated with marketed and investigational ONTs.
- To determine if ONTs share a similar cardiac safety profile with biologics.
Main Methods:
- Reviewed FDA and EMA Approval Packages for 17 marketed ONTs.
- Collected preclinical (hERG, nonhuman primate cardiovascular studies) and clinical QTc data for 29 ONTs (17 marketed, 12 investigational).
- Analyzed data from hERG assays, nonhuman primate telemetry studies, TQT studies, concentration-QTc analyses, and routine ECG monitoring.
Main Results:
- No hERG inhibition was observed for eight tested ONTs at high concentrations.
- No QTc interval effects were noted in nonhuman primate cardiovascular studies for 14 ONTs.
- No clinical QTc prolongation risk was identified across all evaluated ONTs, including 12 investigational ones.
Conclusions:
- The collective evidence from 29 ONTs demonstrates no clinical proarrhythmic risk based on ICH S7B/E14 studies.
- Oligonucleotide therapeutics possess a cardiac safety profile comparable to monoclonal antibodies, proteins, and peptides.
- New ONTs may benefit from reduced cardiac safety testing strategies due to their established low proarrhythmic risk.
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