3',5-Dihydroxy-4',6,7-trimethoxyflavanone

SKU:BHB20403221
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TargetMol
TargetMol
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Overview
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3',5-Dihydroxy-4',6,7-trimethoxyflavanone is a small molecule compound supplied as a solid powder by TargetMol. For biochemical profiling and cell-based assay applications.
Activity Small Molecule Compound
CAS No.
Molecular Weight 346.33 g/mol
Form Solid
Shipping Room Temperature
Options selector
Catalog no. Size
T123947-1MG 1 mg
T123947-5MG 5 mg
Available Options

Select the variant that best fits your experiment. Availability and lead time may vary by option.

  • Options: Size: 1 mg, 5 mg
  • Lead time: In Stock at Manufacturer — options listed in "Availability Content"; other statuses may take longer.
  • Storage: −20 °C
  • Shipping: Room temperature (RT) shipment.
  • Upon receipt: Store at −20 °C as soon as possible.
  • Sales terms and conditions: Please review prior to ordering.
Field Specification
Mfr No T123947
Activity
  • Small Molecule Compound
Molecular Weight 346.335
Product Type
  • Small Molecule Inhibitor
Signaling Pathway Others
SMILES COc1ccc(cc1O)(CH)1CC(=O)c2c(O)c(OC)c(OC)cc2O1
Target Others

Compound Overview

3',5-Dihydroxy-4',6,7-trimethoxyflavanone is a research-grade small molecule supplied by TargetMol.

Physical Properties

Molecular Formula C18H18O7
Molecular Weight 346.33 g/mol
SMILES COc1ccc(cc1O)(CH)1CC(=O)c2c(O)c(OC)c(OC)cc2O1
Form Solid
Shipping Room Temperature (RT)

Biological Activity

3',5-Dihydroxy-4',6,7-trimethoxyflavanone is a useful organic compound for research related to life sciences and the catalog number is T123947.

Safety & Regulatory

For Research Use Only (RUO). Not for therapeutic, diagnostic, or clinical use. Wear appropriate PPE and consult the Safety Data Sheet (SDS) prior to handling.

What do "mg/mL" and "mM" mean?

mg/mL (milligrams per milliliter) and mM (millimolar = millimoles per liter) are two concentration units for the same solution. To convert: mM = (mg/mL × 1000) / MW (g/mol). For example, for a compound with MW = 350 g/mol: 1 mg/mL = 1000/350 = 2.86 mM. Use the molar concentration calculator on the TargetMol website for quick conversions.

Can inhibitors be used for cell experiments?

Yes — TargetMol inhibitors can be used in cell-based and in vitro experiments. Prepare a DMSO stock, then dilute into cell culture medium to the desired working concentration, keeping DMSO ≤ 0.1% (v/v) to avoid solvent toxicity. Note that not all compounds have published data for every cell line or assay system; in such cases, perform a dose-response experiment with appropriate positive and vehicle controls to validate efficacy in your specific model.

Need this compound in a format that drops straight into your assay? We can tailor formulation, chemistry, and documentation so your results stay consistent across runs and re-orders.

  • Format options: solid or pre-dissolved solution (choose solvent), target concentration, aliquots, light/moisture-protected packaging
  • Chemistry options: free base/acid vs salt forms, hydrate/solvate preference, stereoisomer control (single enantiomer or racemate), close analogs
  • Add-on labels & handles: D/¹³C/¹⁵N isotopes (LC-MS/internal standards), azide/alkyne or other functional handles for conjugation
  • QC & documentation: standard COA or enhanced analytical pack (HPLC/LC-MS/NMR), chiral purity, residual solvents, water content (KF), method-specific specs
  • Scale & continuity: mg to gram scale, bulk pricing, lot reservation, repeat-order continuity

To quote quickly, tell us: compound name + CAS/structure (SMILES or mol file), intended assay context, solvent preference, salt/stereochemistry requirements, purity/QC level, and the amount (mg–g).

Can’t find the compound you’re looking for?
Send the CAS or structure and your specs. We can help source it, suggest close equivalents, or discuss custom synthesis with the right QC documentation (RUO).

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Experience the power of Celltrypse™, c-LEcta's innovative enzyme solution for gentle and efficient cell dissociation. Request your free sample and discover a superior alternative for your cell culture workflows.

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