Structural effects of lipophilic methotrexate conjugates on model phospholipid biomembranes


Autoria(s): Pignatello, R.; Toth, I.; Puglisi, G.
Data(s)

01/01/2001

Resumo

Lipophilic conjugates of the antitumor drug methotrexate (MTX) with lipoamino acids (LAAs) have been previously described as a tool to enhance MTX passive entrance into cells, overcoming a form of transport resistance which makes tumour cells insensitive to the antimetabolite. A knowledge of the mechanisms of interaction of such lipophilic derivatives with cell membranes could be useful for planning further lipophilic MTX derivatives with an optimal antitumour activity. To this aim, a calorimetric study was undertaken using a biomembrane model made from synthetic 1,2-dipalmitoyl-glycero-3-phosphocholine (DPPC) multilamellar liposomes. The effects of MTX and conjugates on the phase transition of liposomes were investigated using differential scanning calorimetry. The interaction of pure MTX with the liposomes was limited to the outer part of the phospholipid bilayers, due to the polar nature of the drug. Conversely, its lipophilic conjugates showed a hydrophobic kind of interaction, perturbing the packing order of DPPC bilayers. In particular, a reduction of the enthalpy of transition from the gel to the liquid crystal phase of DPPC membranes was observed. Such an effect was related to the structure and mole fraction of the conjugates in the liposomes. The antitumour activity of MTX conjugates was evaluated against cultures of a CCRF-CEM human leukemic T-cell line and a related MTX resistant sub-line. The in vitro cell growth inhibitory activity was higher for bis(tetradecyl) conjugates than for both the other shorter- and longer-chain derivatives. The biological effectiveness of the various MTX derivatives correlated very well with the thermotropic effects observed on the phase transition of DPPC biomembranes. (C), 2001 Elsevier Science B.V All rights reserved.

Identificador

http://espace.library.uq.edu.au/view/UQ:59392

Idioma(s)

eng

Publicador

Elsevier Science

Palavras-Chave #Chemistry, Analytical #Chemistry, Physical #Methotrexate #Lipoamino Acids #Differential Scanning Calorimetry #Membrane Model #Ccrf-cem Cells #Cem/mtx Cells #Phosphatidylcholine Liposomes #Antitumor-activity #Resistance #Membranes #Transport #Cells #C1 #320501 Pharmaceutical Sciences and Pharmacy #670403 Treatments (e.g. chemicals, antibiotics)
Tipo

Journal Article