KETANSERIN

Ketanserin is a serotonin 5HT2A receptor antagonist with additional 1blocking properties, leading to vasodilation and blood pressure reduction. It is also used in research on platelet aggregation. Benefits include improved peripheral circulation and antihypertensive effects. Side effects may include dizziness, hypotension, nasal congestion, and occasional arrhythmias or edema. Only GMP materials will be supplied, logistics all according to GDP.

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Product Description


Mechanism of Action

KETANSERIN exhibits a structured and multilayered biochemical activity profile involving modulation of enzymatic cascades, receptorbinding dynamics, intracellular signalling architecture, and metabolicflux regulation. Its molecular characteristics indicate potential interactions with catalytic pockets, allosteric surfaces, and regulatory protein domains. Through these interactions, the compound influences phosphorylation patterns, mitochondrial bioenergetics, oxidativestress networks, membrane potential stabilization, and transcriptional pathway responsiveness.

In cellular systems, mechanistic effects may include modulation of calcium flux, ROS equilibrium, structuralprotein turnover, and adaptive stressresponse activation. The compound may act as a pathway booster, suppressor, or modulator depending on dosing, cellular environment, and metabolic state.

Benefits and Advantages

This compound is widely used in biochemical, pharmacological and mechanistic research settings, including:

  • Receptorligand interaction studies and affinitymapping assays
  • Enzyme kinetics and catalyticpathway modelling
  • Mitochondrialfunction, ROSregulation and redoxbalance experiments
  • Transcriptomic, proteomic and metabolomic profiling
  • Cellstress signalling, apoptosis/autophagy pathway mapping and cytoskeletaldynamics studies
  • Pharmacodynamic simulation and SAR (structureactivity relationship) analysis

Side Effects and Risks

Risks may include unintended oxidative imbalance, mitochondrial overload, receptor crosstalk effects, disruption of ionchannel homeostasis, and dosedependent cytotoxicity. At elevated concentrations, the compound may trigger apoptosis, autophagy, or compensatory metabolic rewiring. Longterm exposure can influence transcriptional stability, signalling thresholds, and cellular resilience.

Use only in controlled laboratory environments following strict biosafety and handling protocols. Not intended for human or veterinary use.

Only GMP materials will be supplied, logistics all according to GDP.

Datasheet


Molecular Formula

C22H22FN3O3

Molecular Weight

395.4 g/mol

CAS Number

74050-98-9

Storage Condition

Store in a cool, dry place. Keep container tightly closed. Protect from moisture and light.

Solubility

Solubility depends on solvent and conditions (e.g., pH). Please contact us for solvent-specific guidance.

Purity

Purity information is available upon request (COA).

Synonym

Ketanserin; 74050-98-9; Ketanserine; Ketanserina; Ketanserinum

IUPAC/Chemical Name

3-[2-[4-(4-fluorobenzoyl)piperidin-1-yl]ethyl]-1H-quinazoline-2,4-dione

InChl Key

FPCCSQOGAWCVBH-UHFFFAOYSA-N

InChl Code

InChI=1S/C22H22FN3O3/c23-17-7-5-15(6-8-17)20(27)16-9-11-25(12-10-16)13-14-26-21(28)18-3-1-2-4-19(18)24-22(26)29/h1-8,16H,9-14H2,(H,24,29)

References

https://pubchem.ncbi.nlm.nih.gov/compound/3822;

3D Conformer.

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