Anticancer properties of distinct antimalarial drug classes
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Abstract
We have tested five distinct classes of established and experimental antimalarial drugs for their anticancer potential, using a
panel of 91 human cancer lines. Three classes of drugs: artemisinins, synthetic peroxides and DHFR (dihydrofolate
reductase) inhibitors effected potent inhibition of proliferation with IC50s in the nM- low mM range, whereas a DHODH
(dihydroorotate dehydrogenase) and a putative kinase inhibitor displayed no activity. Furthermore, significant synergies
were identified with erlotinib, imatinib, cisplatin, dasatinib and vincristine. Cluster analysis of the antimalarials based on their
differential inhibition of the various cancer lines clearly segregated the synthetic peroxides OZ277 and OZ439 from the
artemisinin cluster that included artesunate, dihydroartemisinin and artemisone, and from the DHFR inhibitors
pyrimethamine and P218 (a parasite DHFR inhibitor), emphasizing their shared mode of action. In order to further
understand the basis of the selectivity of these compounds against different cancers, microarray-based gene expression
data for 85 of the used cell lines were generated. For each compound, distinct sets of genes were identified whose
expression significantly correlated with compound sensitivity. Several of the antimalarials tested in this study have wellestablished
and excellent safety profiles with a plasma exposure, when conservatively used in malaria, that is well above the
IC50s that we identified in this study. Given their unique mode of action and potential for unique synergies with established
anticancer drugs, our results provide a strong basis to further explore the potential application of these compounds in
cancer in pre-clinical or and clinical settings.
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Hooft van Huijsduijnen, R. et al. 2013. Anticancer properties of distinct antimalarial drug classes. PLoS ONE,8(12): Article no e82962. [https://doi.org/10.1371/journal.pone.0082962]
