METHOXSALEN

Methoxsalen is a photosensitizer that intercalates DNA and enhances UVA effects in PUVA therapy for psoriasis and vitiligo. Side effects include photosensitivity, nausea, aging of skin, and increased cancer risk. Only GMP materials will be supplied, logistics all according to GDP.

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Product Description


Mechanism of Action

METHOXSALEN demonstrates an extensive, multiaxis biochemical activity profile involving coordinated modulation of receptormediated signalling, enzymeregulated catalytic cascades, mitochondrial bioenergetics, intracellular ion regulation, and transcriptomic pathway dynamics. Its physicochemical properties support highaffinity interactions with both catalytic and regulatory protein domains, enabling interference with phosphorylationdephosphorylation cycles, secondmessenger turnover (cAMP, IP, DAG, Ca²⁺), and redoxequilibrium systems.

In cellular environments, METHOXSALEN may influence mitochondrial membrane potential, ATP synthesis efficiency, ROS generation and antioxidant neutralisation capacity. In addition, structuralprotein interactions can modify cytoskeletal arrangement, impacting cell motility, vesicular trafficking, and mechanical signalling. The compound may further modulate chromatin accessibility, transcription factor binding profiles, epigenetic markers, and geneexpression stability.

Benefits and Advantages

Because of its reproducible biochemical footprint, METHOXSALEN is an important tool across advanced research domains, including:

  • Detailed receptorligand binding analysis and structural docking validation
  • Highdefinition enzyme kinetics and catalyticdomain pathway mapping
  • Mitochondrial respiration modelling, ATPflux analysis and oxidativestress pathway evaluation
  • Transcriptomic, proteomic and metabolomic integration studies for fullpathway profiling
  • Apoptosis, necroptosis and autophagyrelated signalling research
  • Cytoskeletaldynamics studies involving actin, tubulin and intermediate filaments
  • Highresolution SAR (structureactivity relationship) investigations for molecular optimisation
  • Pharmacodynamic modelling for doseresponse, thresholdactivation and mechanistic benchmarking

Side Effects and Risks

Potential risks include:

  • Redox imbalance and excessive ROS accumulation
  • Mitochondrial overload or respiratorychain suppression
  • Transcriptional pathway disruption or epigenetic instability
  • Interference with ionchannel behaviour and calciumhandling regulation
  • Cytoskeletal destabilisation and impaired membrane integrity
  • Dosedependent cytotoxicity, apoptosis or autophagy induction
  • Activation of inflammatory signalling cascades such as NF-κB, JNK, or p38

Extended exposure or elevated dosing may trigger metabolic rewiring, organelle stress responses, or longterm alterations in cellular signalling architecture. Strict biosafety protocols, controlled handling, and regulated exposure windows are required.

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

Datasheet


Molecular Formula

C12H8O4

Molecular Weight

216.19 g/mol

CAS Number

298-81-7

Storage Condition

Keep container tightly closed in a dry and well-ventilated place. Light sensitive. Keep in a dry place. Storage class (TRGS 510): 13: Non Combustible Solids

Solubility

less than 1 mg/mL at 59 °F (NTP, 1992)

Purity

Purity information is available upon request (COA).

Synonym

methoxsalen; 8-Methoxypsoralen; 298-81-7; XANTHOTOXIN; Meladinine

IUPAC/Chemical Name

9-methoxyfuro[3,2-g]chromen-7-one

InChl Key

QXKHYNVANLEOEG-UHFFFAOYSA-N

InChl Code

InChI=1S/C12H8O4/c1-14-12-10-8(4-5-15-10)6-7-2-3-9(13)16-11(7)12/h2-6H,1H3

References

https://pubchem.ncbi.nlm.nih.gov/compound/4114;

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