On the Interaction of Doxorubicin with Oleate Ions : Fluorescence Spectroscopy and Liquid-Liquid Extraction Study

    • MUNNIER Emilie
    • Universite Francois-Rabelais, Faculte de Pharmacie, "Focalisation magnetique d'agents anticancereux":IFR 135 "Imagerie Fonctionnelle":CHRU Bretonneau, Service d'Oncologie Medicale
    • TEWES Frederic
    • Universite Francois-Rabelais, Faculte de Pharmacie, "Focalisation magnetique d'agents anticancereux":IFR 135 "Imagerie Fonctionnelle"
    • COHEN-JONATHAN Simone
    • Universite Francois-Rabelais, Faculte de Pharmacie, "Focalisation magnetique d'agents anticancereux":IFR 135 "Imagerie Fonctionnelle"

    • DOUZIECH-EYROLLES Laurence
    • Universite Francois-Rabelais, Faculte de Pharmacie, "Focalisation magnetique d'agents anticancereux":IFR 135 "Imagerie Fonctionnelle"
    • MARCHAIS Herve
    • Universite Francois-Rabelais, Faculte de Pharmacie, "Focalisation magnetique d'agents anticancereux":IFR 135 "Imagerie Fonctionnelle"
    • SOUCE Martin
    • Universite Francois-Rabelais, Faculte de Pharmacie, "Focalisation magnetique d'agents anticancereux":IFR 135 "Imagerie Fonctionnelle"
    • HERVE Katel
    • Universite Francois-Rabelais, Faculte de Pharmacie, "Focalisation magnetique d'agents anticancereux":IFR 135 "Imagerie Fonctionnelle"

    • DUBOIS Pierre
    • Universite Francois-Rabelais, Faculte de Pharmacie, "Focalisation magnetique d'agents anticancereux":IFR 135 "Imagerie Fonctionnelle"
    • CHOURPA Igor
    • Universite Francois-Rabelais, Faculte de Pharmacie, "Focalisation magnetique d'agents anticancereux":IFR 135 "Imagerie Fonctionnelle"

Abstract

Increase of lipophilicity of cationic doxorubicin (DOX) by its association with a fatty acid ion is of interest for pharmaceutical formulations and could have an impact on the drug delivery into cancer cells. On the basis of spectroscopic analysis of intrinsic DOX fluorescence, this study provides an experimental evidence of DOX-oleate interactions as function of ion/drug molar ratio (R) and pH. An electrostatic attraction to oleates is dominant for the cationic form of DOX (pH 6.5) and a hydrophobic interaction is characteristic of the molecular form of DOX (pH 8.6). A high content of sodium oleate vesicles ([oleate][>!-]0.2mM, R[>!-]20) limits the electrostatic and hydrophobic interactions at pH 6.5 while favoring the hydrophobic interactions at pH 8.6. The influence of these interactions on the lipophilicity of the cationic form of DOX is analyzed by measuring the apparent partition coefficient (aqueous buffer pH 6.5/methylene chloride). The results show a lipophilicity gain for the cationic form of DOX in presence of 10:1 ion/drug molar ratio, while no lipophilicity increase is observed at 50:1 molar ratio.

Journal

Chemical & pharmaceutical bulletin   [List of Volumes]

Chemical & pharmaceutical bulletin 55(7), 1006-1010, 2007-07-01  [Table of Contents]

The Pharmaceutical Society of Japan

References:  25

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Codes

  • NII Article ID (NAID) :
    110006317162
  • NII NACSIS-CAT ID (NCID) :
    AA00602100
  • Text Lang :
    ENG
  • Article Type :
    ART
  • ISSN :
    00092363
  • NDL Article ID :
    8783535
  • NDL Source Classification :
    ZS51(科学技術--薬学) // ZP1(科学技術--化学・化学工業)
  • NDL Call No. :
    Z53-D167
  • Databases :
    CJP  NDL  NII-ELS  J-STAGE