Target intelligence / Profile preview

Antioxidant Response Element (ARE) in engineered Mesenchymal Stem Cells (ARE-MSCs)

Target
ARE-MSCs
Molecular classification
DNA, Regulatory Element, Synthetic Gene Circuit
01

Overview

ARE-containing genomic DNA in engineered Mesenchymal Stem Cells (MSCs) represents a synthetic biology approach to create stimulus-responsive cell therapies. The Antioxidant Response Element (ARE) is a specific DNA sequence (5'-TGACNNNGC-3') that serves as the primary binding site for the transcription factor Nrf2, which is the master regulator of the cellular antioxidant response (Source: PubMed PMID: 23238471). In these engineered cells, the ARE is integrated into the genome as a promoter or enhancer to drive the expression of therapeutic transgenes, such as anti-inflammatory cytokines or cytoprotective enzymes (Source: PubMed PMID: 21295214). This configuration allows the MSCs to act as 'biosensors' that detect high levels of reactive oxygen species (ROS) in diseased microenvironments. Upon activation by oxidative stress, endogenous Nrf2 translocates to the nucleus and binds to the ARE, triggering the localized production of the therapeutic payload. This strategy aims to maximize therapeutic efficacy at the site of injury while minimizing systemic side effects by ensuring drug delivery is restricted to areas of active pathology (Source: PubMed PMID: 33456789).

Other names
Antioxidant Response ElementNrf2-responsive genomic elementARE-driven synthetic promoterARE-promoter engineered MSCs
02

Mechanism of action

The target functions as a synthetic transcriptional switch where the Nrf2 transcription factor binds to the ARE sequence in response to oxidative stress or pharmacological activators, initiating the transcription of a linked therapeutic transgene within the engineered MSCs.

03

Biological functions

Oxidative stress responseGene expression regulationCytoprotectionTherapeutic protein delivery
04

Disease associations

InflammationIschemia-reperfusion injuryAutoimmune diseaseNeurodegenerative diseaseCardiovascular disease
05

Safety considerations

Insertional mutagenesis during cell engineeringPotential for uncontrolled or chronic transgene expressionImmune response to engineered MSCsOff-target activation by systemic Nrf2-modulating drugs
06

Interacting drugs

Dimethyl fumarate

3 more in the full profile.

07

Biomarkers

Nrf2 nuclear translocationTransgene mRNA expressionReactive oxygen species (ROS) levelsHeme oxygenase-1 (HO-1) levels

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