Steroid sulfatase-IN-3
Steroid sulfatase-IN-3 (compound 1q) is a potent STS (Steroid sulfatase) inhibitor, with an IC50 of 25.8 nM. Steroid sulfatase-IN-3 shows antiproliferative activity against T-47D estrogen-dependent breast cancer cells, with an IC50 of 1.04 µM.
For research use only. We do not sell to patients.
- CAS No.: 2413880-53-0
- Formula: C17H21ClN2O4S
- Molecular Weight:384.88
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Storage:
Please store the product under the recommended conditions in the Certificate of Analysis.
Biological Activity
Description
IC50 & Target
IC50: 25.8 nM (STS, in JEG-3 cell lysate), 150.0 nM (STS, in JEG-3 cells)[1]
Cellular Effect
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Cell Line
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Type | Value | Description | References |
|---|---|---|---|---|
| JEG-3 | IC50 |
150 nM
Compound: 1q
|
Inhibition of steroid sulfatase in human JEG3 cells using [3H] E1S as substrate incubated for 20 hrs by scintillation spectrometry analysis
Inhibition of steroid sulfatase in human JEG3 cells using [3H] E1S as substrate incubated for 20 hrs by scintillation spectrometry analysis
|
[PMID: 32173116] |
| JEG-3 | IC50 |
25.8 nM
Compound: 1q
|
Inhibition of steroid sulfatase in human JEG3 cell lysates using [3H] E1S as substrate after 1 hr by scintillation spectrometry analysis
Inhibition of steroid sulfatase in human JEG3 cell lysates using [3H] E1S as substrate after 1 hr by scintillation spectrometry analysis
|
[PMID: 32173116] |
| T47D | IC50 |
1.04 μM
Compound: 1q
|
Antiproliferative activity against human T47D cells assessed as reduction in cell proliferation measured after 5 days in presence of estradiol sulfate by crystal violet staining based assay
Antiproliferative activity against human T47D cells assessed as reduction in cell proliferation measured after 5 days in presence of estradiol sulfate by crystal violet staining based assay
|
[PMID: 32173116] |
Chemical Information
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CAS No. 2413880-53-0
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Molecular Weight 384.88
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Formula C17H21ClN2O4S
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SMILES
O=S(OC1=CC=C(C(NC2(C3)CC4CC3CC(C4)C2)=O)C=C1Cl)(N)=O
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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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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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Research Protocol for Endocrine Diseases
Endocrine diseases often arise from disrupted hormone production, hormone signaling, or target-tissue responsiveness; for diabetes-focused endocrine disease models, insulin signaling regulates glucose uptake, hepatic glucose output, lipid metabolism, and β-cell compensation. Type 2 diabetes develops through interacting defects in insulin resistance, β-cell dysfunction, adipose inflammation, hepatic glucose overproduction, altered incretin signaling, and ectopic lipid metabolism. A major unresolved question is whether endocrine dysfunction is driven primarily by target-tissue insulin resistance, intrinsic β-cell failure, immune/inflammatory stress, or combined multi-organ failure that differs by disease stage.
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Breast Cancer Modeling
Breast cancer is a heterogeneous cancer, and it has been distinguished into four subtypes: luminal A, luminal B, HER2-positive and basal-like. Molecular mutations, epigenetic alterations, hormone exposure and immune microenvironment are related to the progression of breast cancer.
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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)