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Perspectives on the Clinical Development of NRF2-Targeting Drugs. | LitMetric

Perspectives on the Clinical Development of NRF2-Targeting Drugs.

Handb Exp Pharmacol

Instituto de Investigaciones Biomédicas "Alberto Sols" UAM-CSIC, Instituto de Investigación Sanitaria La Paz (IdiPaz), Madrid, Spain.

Published: February 2021

AI Article Synopsis

  • NRF2 is a transcription factor that helps the body respond to stressors like oxidative stress and inflammation, making it a potential target for treating chronic diseases such as neurodegenerative, cardiovascular, and metabolic disorders.
  • While activating NRF2 shows promise in preventing cancer, inhibiting it may be necessary in existing tumors since NRF2 can help these tumors survive.
  • The review discusses various activators and inhibitors of NRF2, as well as the potential for new treatments through advanced screening and drug repurposing to better control NRF2’s role in health and disease.

Article Abstract

The transcription factor NRF2 (nuclear factor erythroid 2-related factor 2) triggers homeostatic responses against a plethora of environmental or endogenous deviations in redox metabolism, inflammation, proteostasis, etc. Therefore, pharmacological activation of NRF2 is a promising therapeutic strategy for several chronic diseases that are underlined by low-grade oxidative inflammation and dysregulation of redox metabolism, such as neurodegenerative, cardiovascular, and metabolic diseases. While NRF2 activation is useful in inhibiting carcinogenesis, its inhibition is needed in constituted tumors where NRF2 provides a survival advantage in the challenging tumor niche. This review describes the electrophilic and non-electrophilic NRF2 activators with clinical projection in various chronic diseases. We also analyze the status of NRF2 inhibitors, which are for the moment in a proof-of-concept stage. Advanced in silico screening and medicinal chemistry are expected to provide new or repurposing small molecules with increased potential for fostering the development of targeted NRF2 modulators. The nuclear factor erythroid 2 (NFE2)-related factor 2 (NRF2) is rapidly degraded by proteasomes under a basal condition in a Keap1-dependent manner. ROS oxidatively modifies Keap1 to release NRF2 and allow its nuclear translocation. Here it binds to the antioxidant response element to regulate gene transcription. An alternative mechanism controlling NRF2 stability is glycogen synthase kinase 3 (GSK-3)-induced phosphorylation. Indicated in blue are NRF2-activating and NRF2-inhibiting drugs.

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Source
http://dx.doi.org/10.1007/164_2020_381DOI Listing

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