Project description:Pemetrexed is an antifolate drug used in the treatment of lung cancer. EA.hy 926 cells grown under low (Lo) and normal (Hi) folate conditions were treated with PMX. Microarray analysis was used to examine changes in gene expression due to PMX treatment.
Project description:Pemetrexed is an antifolate drug used in the treatment of lung cancer. EA.hy 926 cells grown under low (Lo) and normal (Hi) folate conditions were treated with PMX. Microarray analysis was used to examine changes in gene expression due to PMX treatment. Hi and Lo cells were grown to confluence and maintained in fresh medium for 24 hours prior to treatment with 0.5uM PMX for 48 hours.
Project description:Methotrexate (MTX) is an anti-folate drug used to treat inflammatory diseases such as rheumatoid arthritis. The changes induced by MTX were profiled within EA.hy 926 cells grown in normal (Hi) and low (Lo) folate. Several inflammatory genes were up regulated and several mitosis related genes were down regulated.
Project description:Methotrexate (MTX) is an anti-folate drug used to treat inflammatory diseases such as rheumatoid arthritis. The changes induced by MTX were profiled within EA.hy 926 cells grown in normal (Hi) and low (Lo) folate. Several inflammatory genes were up regulated and several mitosis related genes were down regulated. Hi and Lo cells were grown to confluence and maintained in fresh medium for 24 hours prior to treatment with 0.5uM MTX for 48 hours.
Project description:Pemetrexed, a multi-folate inhibitor combined with a platinum compound is the first-line treatment of malignant mesothelioma, but median survival is still one year. Innate and acquired resistance to pemetrexed is common, but its biological basis is obscure. Here we report for the first time a genome-wide profile of acquired resistance in the tumour from an exceptional case with advanced pleural mesothelioma and almost six years survival after 39 cycles of second-line pemetrexed/carboplatin treatment.
Project description:Macrophage phenotypic and functional heterogeneity derives from tissue-specific transcriptional signatures shaped by the local microenvironment. GM-CSF drives the generation of human monocyte-derived macrophages with a potent pro-inflammatory activity upon stimulation. One-carbon metabolism (OCM) is a complex network of biosynthetic pathways that includes de novo biosynthesis of purines and thymidylate, amino acid metabolism, and methylation reactions. We explored the molecular impact of blocking OCM with the anti-folate pemetrexed (PMX) on the gene expression profile in LPS-activated GM-CSF-primed human monocyte derived macrophages. The specificity of blocking OCM with the anti-folate PMX was demonstrated with folinic acid.