MORACIZINE HCL

Moracizine HCl is a class IC antiarrhythmic altering cardiac conduction. Side effects include dizziness, arrhythmias, nausea, and blurred vision.

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Product Description


Mechanism of Action

MORACIZINE HCL (ID 26774) exhibits a deeply layered biochemical action profile involving coordinated modulation of enzyme-driven catalytic cascades, receptor-mediated signalling processes, intracellular ion dynamics, mitochondrial bioenergetics, membrane-potential stability and transcription-factor pathway regulation. Its molecular architecture supports high-affinity interaction with both catalytic and regulatory protein domains. These interactions allow the compound to influence phosphorylation–dephosphorylation cycles, reactive oxygen species (ROS) equilibrium, ATP turnover, calcium flux, and mitochondrial redox-state balance. In many experimental systems, MORACIZINE HCL contributes to structural-protein reorganisation, cytoskeletal tension modulation and vesicular transport behaviour.

The compound may also affect chromatin accessibility and epigenetic markers, shifting transcriptional activity across multiple gene clusters involved in stress adaptation, metabolic steering and survival signalling. Such multi-dimensional mechanistic behaviour underlies its utility in complex research models.

Benefits and Advantages

MORACIZINE HCL is suitable for a wide range of advanced laboratory research applications, including:

  • Detailed receptor–ligand interaction mapping and affinity-modelling
  • High-resolution enzymatic kinetic analysis and catalytic cascade mapping
  • Mitochondrial-function assays, ATP-flux modelling and oxidative-stress monitoring
  • Multi-omics systems: transcriptomics, proteomics, metabolomics and phosphoproteomics
  • Cytoskeletal-dynamics research including actin–tubulin remodelling and mechanical signalling
  • Apoptosis, necroptosis, ferroptosis and autophagy signalling studies
  • SAR (structure–activity relationship) development and molecular-performance optimisation
  • Advanced pharmacodynamic simulations and dose–response mechanistic modelling

Side Effects and Risks

Potential risks associated with MORACIZINE HCL include:

  • Oxidative-stress imbalance leading to ROS accumulation
  • Mitochondrial overactivation or suppression of respiratory-chain complexes
  • Ion-channel dysregulation affecting Ca²⁺/Na⁺/K⁺ homeostasis
  • Unintended receptor cross-activation or inhibition
  • Cytoskeletal destabilisation and membrane-integrity compromise
  • Dose-dependent cytotoxicity, apoptosis, autophagy or metabolic-collapse signalling
  • Activation of inflammatory transcriptional programmes (e.g., NF‑κB, p38 MAPK, JNK)

Prolonged exposure or excessive concentration may trigger transcriptional rewiring, altered metabolic routing, organelle stress responses, or epigenetic instability. Handle only under controlled laboratory conditions with appropriate biosafety procedures.

Datasheet


Molecular Formula

C22H27ClN2O4

Molecular Weight

464.0 g/mol

CAS Number

29560-58-5

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

MORICIZINE HYDROCHLORIDE; 29560-58-5; Moracizine hydrochloride; Ethmozine; Moricizine HCl

IUPAC/Chemical Name

ethyl N-[10-(3-morpholin-4-ylpropanoyl)phenothiazin-2-yl]carbamate;hydrochloride

InChl Key

GAQAKFHSULJNAK-UHFFFAOYSA-N

InChl Code

InChI=1S/C22H25N3O4S.ClH/c1-2-29-22(27)23-16-7-8-20-18(15-16)25(17-5-3-4-6-19(17)30-20)21(26)9-10-24-11-13-28-14-12-24;/h3-8,15H,2,9-14H2,1H3,(H,23,27);1H

References

https://pubchem.ncbi.nlm.nih.gov/compound/34632;

3D Conformer.

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