SMARCA2-IN-8
SMARCA2-IN-8 (Compound 13) is an orally active inhibitor for SWI/SNF chromatin remodeling complexe SMARCA2 (also known as Brahma homologue, BRM) and SMARCA4 (also known as Brahma-related gene 1, BRG1) with IC50 of 5 and 6 nM. SMARCA2-IN-8 inhibits the proliferation of SMARCA2 mutated cancer cell SKMEL5 with AAC50 of 5 nM. SMARCA2-IN-8 downregulates the SMARCA2-dependent KRT80 gene expression with AAC50 of 10 nM. SMARCA2-IN-8 exhibits antitumor efficacy and good pharmacokinetic characteristics in mice.
For research use only. We do not sell to patients.
- CAS No.: 2270875-93-7
- Formula: C10H8F3N5OS
- Molecular Weight:303.26
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Storage:
Please store the product under the recommended conditions in the Certificate of Analysis.
All SWI/SNF Complex Isoforms
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Biological Activity
Description
Cellular Effect
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Cell Line
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Type | Value | Description | References |
|---|---|---|---|---|
| SBC-5 | EC50 |
>10 μM
Compound: 13
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Antiproliferative activity against human SBC5 cells assessed as cell growth inhibition after 6 days by celltiter-glo luminescent cell viability assay
Antiproliferative activity against human SBC5 cells assessed as cell growth inhibition after 6 days by celltiter-glo luminescent cell viability assay
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[PMID: 30339381] |
Chemical Information
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CAS No. 2270875-93-7
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Molecular Weight 303.26
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Formula C10H8F3N5OS
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SMILES
O=C(NC1=CC(C(F)F)=NS1)NC2=CC(F)=NC=C2N
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Shipping
Room temperature in continental US; may vary elsewhere.
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Storage
Please store the product under the recommended conditions in the Certificate of Analysis.
Protocols
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RT-PCR
Reverse transcription technology uses RNA as a template to synthesize DNA. RT-PCR is simple, specific and sensitive, and can be used to detect gene expression levels and expression differences in cells; detect RNA virus content; clone cDNA sequences of specific genes.
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RNA extraction experimental
By lysing cells, releasing RNA, and removing impurities such as proteins and DNA, high-purity RNA products are finally obtained. The commonly used traditional method is the guanidine isothiocyanate/phenol/chloroform method (Trizol), which is suitable for a variety of animal materials including animal tissues, microorganisms, cultured cells, etc., and most plant materials.
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Cell Cytotoxicity Assay
Cytotoxicity assays are usually based on the assessment of cell membrane damage, which can also be indirectly detected by measuring cell viability. Detection methods include MTT assay, CKK-8 assay, LDH assay and ATP assay, etc.
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Patient-Derived Xenograft (PDX)
Patient-derived xenograft (PDX) models are generated by engrafting primary human tumor tissue directly into immunodeficient mice, allowing in vivo propagation of patient tumor biology without initial in vitro adaptation. These models are used to preserve key histopathological and molecular characteristics of the original tumor and enable assessment of tumor growth dynamics and therapeutic response in a living organism. The biological readout is tumor engraftment and subsequent growth in the murine host, which reflects the ability of human tumor cells to survive, vascularize, and expand in an immunocompromised microenvironment.
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Real Time qPCR (Q-PCR)
Real-time quantitative PCR (qPCR) quantifies an amplifiable nucleic-acid target by monitoring fluorescence during PCR cycling rather than measuring product only after amplification. The increase in fluorescence tracks accumulation of PCR product, and the quantification cycle (Cq; historically also Ct/CP) is related to the initial amount of target: samples containing more starting target generally reach the defined fluorescence threshold in fewer cycles.
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Cell Viability Determination by MTT Colorimetric Assay
The following protocol uses the MTT colorimetric assay as a classic literature-established method for assessing cell viability/metabolic activity in cultured mammalian cells. MTT[3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide] is reduced by metabolically active cells to a colored formazan product; the amount of formazan is quantified spectrophotometrically and provides an indirect measure of metabolically active viable cells. Importantly, MTT reduction reflects cellular oxidoreductase/metabolic activity rather than an absolute direct count of living cells, so changes in cellular metabolism can alter the signal independently of cell number.
Purity & Documentation
References
Calculators
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)