5-(3-Phenylpropoxy)psoralen and 5-(4-phenylbutoxy)psoralen: mechanistic studies on phototoxicity.

C W Bode, W Hänsel
Author Information
  1. C W Bode: Institute of Pharmacy, Department of Pharmaceutical Chemistry, Christian-Albrechts-University Kiel, Germany.

Abstract

5-(3-Phenylpropoxy)psoralen and 5-(4-phenylbutoxy)psoralen are blockers of the lymphocyte potassium channel Kv1.3 with EC50 values < 10 nM and may be used as new potential immunosuppressive drugs. As reported for many furocoumarins, these compounds show phototoxic properties and react under UV radiation with different targets in the cell, e.g. DNA or proteins and lipids in membranes. The photoreactions with these targets were investigated and compared to the well-known derivatives psoralen, 5-methoxypsoralen, 8-methoxypsoralen and 4,5',8-trimethylpsoralen. Moreover, absorption properties and the capability to photoproduce singlet oxygen (1O2) and reactive oxygen species (ROS) were studied. It was found that 5-(3-phenylpropoxy)psoralen and 5-(4-phenylbutoxy)psoralen are similar or less phototoxic in vitro as 5-methoxypsoralen which is the furocoumarin with the weakest phototoxicity in vivo compared to psoralen, 8-methoxypsoralen and 4,5',8-trimethylpsoralen.

MeSH Term

Animals
Cross-Linking Reagents
DNA
Dermatitis, Phototoxic
Erythrocytes
Ficusin
Free Radicals
Hemolysis
In Vitro Techniques
Kv1.3 Potassium Channel
Lipids
Oxidation-Reduction
Oxygen
Potassium Channel Blockers
Potassium Channels, Voltage-Gated
Proteins
Spectrophotometry, Ultraviolet
Superoxides
Swine
Ultraviolet Rays

Chemicals

5-(3-Phenylpropoxy)psoralen
5-(4-phenylbutoxy)psoralen
Cross-Linking Reagents
Free Radicals
Kv1.3 Potassium Channel
Lipids
Potassium Channel Blockers
Potassium Channels, Voltage-Gated
Proteins
Superoxides
DNA
Ficusin
Oxygen

Word Cloud

Created with Highcharts 10.0.0psoralen5-4-phenylbutoxy3-Phenylpropoxyphototoxicpropertiestargetscompared5-methoxypsoralen8-methoxypsoralen45'8-trimethylpsoralenoxygenphototoxicityblockerslymphocytepotassiumchannelKv13EC50values<10nMmayusednewpotentialimmunosuppressivedrugsreportedmanyfurocoumarinscompoundsshowreactUVradiationdifferentcellegDNAproteinslipidsmembranesphotoreactionsinvestigatedwell-knownderivativesMoreoverabsorptioncapabilityphotoproducesinglet1O2reactivespeciesROSstudiedfound3-phenylpropoxysimilarlessvitrofurocoumarinweakestvivopsoralen:mechanisticstudies

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