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A Entrena

Publications and source records attributed to A Entrena.

4 recordsLinked to original sources

(Q)SAR studies to design new human choline kinase inhibitors as antiproliferative drugs.

Most of the signal transduction pathways are mediated by protein kinases regulating every aspect of cell function. Mutations which deregulate their expression or their function or both result in cancers. Therefore, protein kinase inhibitors have become the focus of development of new therapies for cancer. A comprehensive review of Choline kinase (ChoK) was published by us in 2003. Since then, molecular information of ChoK inhibitors has been accumulated. In this review, we intend to summarize the new lines of evidence that will include the design of the most active antiproliferative agents so far described against ChoK. Studies have been aimed at the establishment of structure-activity relationships and the structural parameters that define ChoK inhibitory and antiproliferative activities of a set of twenty-five acyclic biscationic pyridophane and forty acyclic biscationic quinolinephane compounds. The corresponding QSAR equation was obtained for the whole set of bisquinolinium compounds for the antiproliferative activity, taking into consideration the electronic parameter sigma(R) of R(4), the molar refractivity (MR) of R(8), and the lipophilic parameters clog P and pi(linker). The most potent antiproliferative agent shows an IC(50) = 0.45 microM, predicted by the QSAR equation, whilst its experimental value is IC(50) = 0.20 microM. Finally, toxicity assays were performed for the most promising compounds because of their interesting antiproliferative activities [IC(50 HT-29) = 0.70, 0.80, 1.50 and 1.90 microM] and low toxicity [LD(50) = 16.7, 12.5, > 25 and > 20 mg/kg of mouse]. These biological activities justify further analysis for antitumoral assays under in vivo conditions.

Animals↗

LUMO energy of model compounds of bispyridinium compounds as an index for the inhibition of choline kinase.

Eleven derivatives of 1,1'-[1,2-ethylenebis(benzene-1,4-diylmethylene)]bis(4-pyridinium) dibromides bearing various groups at C-4 of the pyridinium moiety were synthesized and examined for their inhibition of choline kinase (ChoK) and antiproliferative activities. The C-4 substituents include electron-releasing, neutral or electron-withdrawing groups. A one-parameter regression equation has been derived which satisfactorily describes the ex vivo inhibitory potency of ChoK of the title compounds. The electronic effect plays a critical function in the ex vivo inhibition of ChoK although the role of electrostatic interactions could be altered due to a solvation process of both ChoK and ligands.

Choline Kinase↗

Anticancer pyrimidine acyclonucleosides.

Several acyclonucleosides have been synthesized. Series 8 could liberate 5-FU and acrolein selectively in the tumour tissue whilst 9 only discharge 5-FU. The conformational analysis of 8 and 9 has been carried out by means of Molecular Mechanics, using the MM2 force field. It was observed that the open chain linked to the N-1 of the 5-FU moiety mimics the conformational structure of the sugar of desoxyuridine. Biological assays have been carried out in vitro on tumour growth in Ehrlich ascitic cells with the consequent decrease of 35% in the cellular mitosis. IC50 showed values between 3-45 microM for series 8 whilst series 9 were less active than 5-FU. Compared with that of 5-FU the acute and chronic toxicity is considerably decreased.

Animals↗