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Determination of the Relative Potency of an Anti-TNF Monoclonal Antibody mAb by Neutralizing TNF Using an In Vitro Bioanalytical Method
Published on: September 16, 2017
The NAE inhibitor pevonedistat (MLN4924) synergizes with TNF-α to activate apoptosis
F S Wolenski1, C D Fisher1, T Sano2
1Drug Safety Research and Evaluation, Millennium Pharmaceuticals, Inc., a wholly owned subsidiary of Takeda Pharmaceutical Company Limited , 35 Landsdowne Street, Cambridge, MA, USA.
Abstract:
Predicting and understanding the mechanism of drug-induced toxicity is one of the primary goals of drug development. It has been hypothesized that inflammation may have a synergistic role in this process. Cell-based models provide an easily manipulated system to investigate this type of drug toxicity. Several groups have attempted to reproduce in vivo toxicity with combination treatment of pharmacological agents and inflammatory cytokines. Through this approach, synergistic cytotoxicity between the investigational agent pevonedistat (MLN4924) and TNF-α was identified. Pevonedistat is an inhibitor of the NEDD8-activating enzyme (NAE). Inhibition of NAE prevents activation of cullin-RING ligases, which are critical for proteasome-mediated protein degradation. TNF-α is a cytokine that is involved in inflammatory responses and cell death, among other biological functions. Treatment of cultured cells with the combination of pevonedistat and TNF-α, but not as single agents, resulted in rapid cell death. This cell death was determined to be mediated by caspase-8. Interestingly, the combination treatment of pevonedistat and TNF-α also caused an accumulation of the p10 protease subunit of caspase-8 that was not observed with cytotoxic doses of TNF-α. Under conditions where apoptosis was blocked, the mechanism of death switched to necroptosis. Trimerized MLKL was verified as a biomarker of necroptotic cell death. The synergistic toxicity of pevonedistat and elevated TNF-α was also demonstrated by in vivo rat studies. Only the combination treatment resulted in elevated serum markers of liver damage and single-cell hepatocyte necrosis. Taken together, the results of this work have characterized a novel synergistic toxicity driven by pevonedistat and TNF-α.
Insights
The investigational drug pevonedistat combined with tumor necrosis factor-alpha (TNF-α) causes synergistic cell death. This novel toxicity mechanism involves caspase-8 and necroptosis, confirmed in cell and rat models.
Area of Science:
- Pharmacology
- Toxicology
- Cell Biology
Background:
- Drug-induced toxicity is a major hurdle in drug development.
- Inflammation, particularly tumor necrosis factor-alpha (TNF-α), may synergize with drugs to cause toxicity.
- Cell-based models are valuable for investigating drug toxicity mechanisms.
Purpose of the Study:
- To investigate the synergistic cytotoxicity of pevonedistat (MLN4924), a NEDD8-activating enzyme (NAE) inhibitor, with TNF-α.
- To elucidate the mechanism underlying the observed synergistic toxicity.
- To validate the findings in preclinical in vivo models.
Main Methods:
- Utilized cell-based assays to assess cytotoxicity of pevonedistat and TNF-α combination treatment.
- Investigated cell death pathways, including caspase-8 activation and necroptosis markers (trimerized MLKL).
- Performed in vivo studies in rats to evaluate liver toxicity and hepatocyte necrosis.
Main Results:
- Combination treatment of pevonedistat and TNF-α induced rapid, synergistic cell death, not observed with single agents.
- Caspase-8 mediated the cell death, with increased p10 subunit accumulation.
- Inhibition of apoptosis shifted the cell death mechanism to necroptosis.
- In vivo studies showed combination treatment elevated liver damage markers and caused hepatocyte necrosis.
Conclusions:
- Pevonedistat and TNF-α exhibit synergistic toxicity through caspase-8-mediated apoptosis and necroptosis.
- Trimerized MLKL serves as a biomarker for this combined toxicity.
- The findings highlight a novel drug-cytokine interaction with significant implications for drug safety assessment.
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