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Current Landscape of NRF2 Biomarkers in Clinical Trials
Yoko Yagishita1, Tonibelle N Gatbonton-Schwager1, Melissa L McCallum1
1Fred Hutchinson Cancer Research Center, Translational Research Program, Public Health Sciences Division, Seattle, WA 98109, USA.
Abstract:
The transcription factor NF-E2 p45-related factor 2 (NRF2; encoded by NFE2L2) plays a critical role in the maintenance of cellular redox and metabolic homeostasis, as well as the regulation of inflammation and cellular detoxication pathways. The contribution of the NRF2 pathway to organismal homeostasis is seen in many studies using cell lines and animal models, raising intense attention towards targeting its clinical promise. Over the last three decades, an expanding number of clinical studies have examined NRF2 inducers targeting an ever-widening range of diseases. Full understanding of the pharmacokinetic and pharmacodynamic properties of drug candidates rely partly on the identification, validation, and use of biomarkers to optimize clinical applications. This review focuses on results from clinical trials with four agents known to target NRF2 signaling in preclinical studies (dimethyl fumarate, bardoxolone methyl, oltipraz, and sulforaphane), and evaluates the successes and limitations of biomarkers focused on expression of NRF2 target genes and others, inflammation and oxidative stress biomarkers, carcinogen metabolism and adduct biomarkers in unavoidably exposed populations, and targeted and untargeted metabolomics. While no biomarkers excel at defining pharmacodynamic actions in this setting, it is clear that these four lead clinical compounds do touch the NRF2 pathway in humans.
Insights
The NRF2 pathway is crucial for cellular health. Clinical trials show that NRF2 inducers impact this pathway, but effective biomarkers for drug development remain a challenge.
Area of Science:
- Biochemistry
- Pharmacology
- Molecular Biology
Background:
- The transcription factor NRF2 (encoded by *NFE2L2*) is vital for cellular redox, metabolic homeostasis, inflammation, and detoxification.
- NRF2 pathway activation holds significant clinical promise, leading to extensive research in various diseases over three decades.
Purpose of the Study:
- To review clinical trial data for four NRF2-targeting agents: dimethyl fumarate, bardoxolone methyl, oltipraz, and sulforaphane.
- To evaluate the efficacy and limitations of various biomarkers used to assess NRF2 pathway modulation in clinical settings.
Main Methods:
- Analysis of clinical trial results for NRF2 inducers.
- Evaluation of biomarkers including NRF2 target gene expression, inflammation, oxidative stress, carcinogen metabolism, and metabolomics.
Main Results:
- Four lead clinical compounds (dimethyl fumarate, bardoxolone methyl, oltipraz, sulforaphane) demonstrably affect the NRF2 pathway in humans.
- Current biomarkers show limitations in precisely defining the pharmacodynamic actions of NRF2-targeting drugs.
Conclusions:
- While NRF2 inducers engage the pathway in humans, the development of robust pharmacodynamic biomarkers is still needed for optimal clinical application.
- Further research is required to refine biomarker strategies for NRF2-targeted therapies.
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