Nrf2 as a therapeutic target in acetaminophen hepatotoxicity: A case study with sulforaphane

Yasaman Etemadi1, Jephte Y Akakpo1, Anup Ramachandran1

  • 1Department of Pharmacology, Toxicology, and Therapeutics, University of Kansas Medical Center, Kansas City, Kansas, USA.

Insights

Therapeutic activation of nuclear factor erythroid 2-related factor 2 (Nrf2) is not a viable treatment for acetaminophen overdose. Nrf2 activators like sulforaphane showed less protection than N-acetylcysteine.

Area of Science:

  • Hepatology
  • Pharmacology
  • Toxicology

Background:

  • Acetaminophen (APAP) overdose causes severe liver injury and acute liver failure.
  • N-acetylcysteine (NAC) is the only approved antidote but has a narrow therapeutic window.
  • Nuclear factor erythroid 2-related factor 2 (Nrf2) activation is a potential therapeutic target for APAP hepatotoxicity.

Purpose of the Study:

  • To evaluate the therapeutic potential of Nrf2 activation for treating APAP-induced liver injury.
  • To assess if short-term Nrf2 activator treatment is clinically feasible for drug overdose.

Main Methods:

  • A murine model of APAP hepatotoxicity was used.
  • The Nrf2 activator sulforaphane (SFN) was administered post-APAP.
  • Nrf2 activation, target gene expression, and liver injury markers were assessed.
  • SFN efficacy was compared to NAC treatment.

Main Results:

  • Short-term SFN treatment (≤3 hours) did not activate Nrf2 or its target genes.
  • Posttreatment with SFN showed partial protection at 6 hours, linked to heme oxygenase-1 activation.
  • NAC provided superior and sustained protection compared to SFN at 24 hours.

Conclusions:

  • Nrf2 activators require cellular stress for activation and exhibit delayed adaptive responses.
  • These characteristics limit their sustained efficacy in acute settings like APAP overdose.
  • Nrf2 activators are less suitable for treating APAP hepatotoxicity compared to NAC.

Related Concept Videos

NF-κB-dependent Signaling Pathway02:26

NF-κB-dependent Signaling Pathway

The transcription factor NF-κB was discovered in 1986 in the lab of Nobel laureate Professor David Baltimore, for its interaction with the immunoglobulin light chain enhancer in B-cells. After more than three decades of study, it is now evident that NF-κB regulates the expression of over 100 genes. Most of these genes play an essential role in the innate and adaptive immune responses as well as the inflammatory responses of animals.
NF-κB-dependent Signaling Mechanism
The...
7.5K
Phase II Reactions: Glutathione Conjugation and Mercapturic Acid Formation01:22

Phase II Reactions: Glutathione Conjugation and Mercapturic Acid Formation

Glutathione, a tripeptide made up of glutamate, cysteine, and glycine, is a critical player in the detoxification of drugs and xenobiotics via a process known as glutathione conjugation or mercapturic acid formation. This phase II biotransformation reaction involves the covalent binding of glutathione to a drug or its metabolite, enhancing the compound's water solubility and enabling its excretion.
Several distinctive characteristics distinguish glutathione conjugation from other phase II...
257
Phase II Reactions: Acetylation Reactions01:24

Phase II Reactions: Acetylation Reactions

Acetylation, a phase II biotransformation reaction, introduces an acetyl group to drugs or their metabolites. Acetyltransferase enzymes facilitate this reaction, which resembles α-amino acid conjugation due to the addition of a functional group to the drug molecule.
The substrates for acetylation are typically drugs or their metabolites with an amino, sulfonamide, or hydrazine functional group. Acetylation can occur at several points in the drug molecule, including primary, secondary, and...
266
Transducer Mechanism: Nuclear Receptors01:31

Transducer Mechanism: Nuclear Receptors

Nuclear receptors, or NRs, are unique transcription factors that regulate gene transcription and affect the cellular pathways involved in reproduction, development, or metabolism. Their ability to be stimulated by small lipophilic ligands and control vital cellular processes makes them ideal drug targets. Nearly 10-15% of currently prescribed drugs target these receptors.
About 48 different soluble family members of nuclear receptors are identified that can be divided into two main classes:
1.4K
Targeted Cancer Therapies02:57

Targeted Cancer Therapies

The targeted cancer therapies, also known as “molecular targeted therapies,” take advantage of the molecular and genetic differences between the cancer cells and the normal cells. It needs a thorough understanding of the cancer cells to develop drugs that can target specific molecular aspects that drive the growth, progression, and spread of cancer cells without affecting the growth and survival of other normal cells in the body.
There are several types of targeted therapies against...
7.7K