
Representative render — packaging may vary
SR-9009
Also indexed as Stenabolic · REV-ERB agonist
All products currently listed on this site are for research purposes only.
A synthetic agonist of the nuclear receptors REV-ERBα and REV-ERBβ, used as a chemical probe in circadian biology.
Size
$62.00
per unit · EP-SRN-030
Add 2 more to reach $56.00 per unit.
| Quantity | Unit price | Saving |
|---|---|---|
| 1–2 | $62.00 | — |
| 3+ | $56.00 | 10% |
| 5+ | $50.00 | 19% |
Certificate of analysis
Lot EP-SRN-2605A
98.5%
Assayed purity
Guaranteed floor 98.5%
- Tested
- May 19, 2026
- Laboratory
- Colmaric Analyticals
- Methods
- HPLCMS
Literature
Research context
SR-9009 is a pyrrole-based REV-ERB agonist developed at Scripps as a tool compound for interrogating the molecular clock. Published work covers circadian gene oscillation in mouse tissue, mitochondrial biogenesis markers in skeletal muscle, and a subsequent literature debate over REV-ERB-independent effects observed in knockout models.
Documented research areas
- REV-ERBα/β nuclear receptor agonism
- Circadian gene oscillation in mice
- Mitochondrial biogenesis markers
- Chemical-probe target validation
Specification
Chemistry
- CAS number
- 1379686-30-2
- Molecular formula
- C20H24ClN3O4S
- Molecular weight
- 437.94 g/mol
- Form
- Solution
- Purity floor
- ≥ 98.5%
- Appears in
- 4 documented research areas
Laboratory
Storage and handling
Storage
Store at 4°C, protected from light. Do not freeze solution.
Handling
For laboratory use by qualified personnel only. Not for human or veterinary use.
Research use only. This material is supplied for laboratory research by qualified personnel. It is not a drug, food, cosmetic or household product, and it is not for human or veterinary use. See our research use policy and prohibited uses.
Sources
Selected references
- Solt et al., Nature (2012) — Regulation of circadian behaviour by REV-ERB agonists
- Dierickx et al., Proc Natl Acad Sci USA (2019) — SR9009 effects independent of REV-ERB
External links open in a new tab. Ethereal Peptides is not affiliated with the publishers or the authors listed.
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