R16

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Selleck Chemicals

SKU:E1973-5MG

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R16 is an inhibitor of NRF2 used in studies of NF-kB Signaling and Immune Signaling and related signaling programs. In practice, this places the compound in experiments that measure inflammatory transcriptional control and stress-responsive survival signaling and cytokine-mediated signaling and inflammatory effector responses in immunology, inflammation, and oxidative stress models.

By inhibiting NRF2, R16 can be used to examine inflammatory transcriptional control and stress-responsive survival signaling and cytokine-mediated signaling and inflammatory effector responses. The signaling pathway modulator annotation adds relevance to pathway-reporter and mechanistic-phenotyping studies, together with downstream-response mapping in the same experimental setting. In immunology, inflammation, and oxidative stress models, these readouts can be combined with viability, reporter, localization, biochemical conversion, or morphology endpoints to refine experimental interpretation.

Research Applications

  • Target-focused assays involving NRF2
  • Pathway perturbation studies connected to NF-kB Signaling and Immune Signaling and related signaling programs
  • Concentration-response inhibition and target-dependence studies
  • Pathway-reporter and mechanistic-phenotyping studies

Overall, R16 is appropriate when a defined chemical perturbant is needed to connect NRF2 with measurable biochemical, transcriptional, electrophysiological, imaging, or phenotypic readouts in immunology, inflammation, and oxidative stress models. This profile is suited to mechanistic follow-up, comparative profiling, and assay optimization under defined exposure conditions.

Targets:
NRF2
Target Class:
Signaling Pathway Modulator
Pathways:
NF-kB Signaling • Immune Signaling • Oxidative Stress Response
Research Area:
Immunology • Inflammation • Oxidative Stress
CAS No.:
6325-13-9
Molecular Weight:
442.53
Formula:
C₂₂H₂₆N₄O₄S
Storage Temperature:
-20°C

For Research Use Only. Not intended for diagnostic or therapeutic use.
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