Global ETD Search
Search theses and dissertations gathered from participating repositories worldwide. Every result links back to the library that holds it. No account is needed.
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Showing 1 to 6 of 6 for “"Edelfosine"”.
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Examining the effect of anti-tumor lipid drugs on pH homeostasis and membrane structure in Saccharomyces cerevisiae
The lysophosphatidylcholine analogue, edelfosine is a potent anti-tumor lipid drug that is known to target cellular membranes. The underlying mechanisms leading to cell death remain largely controversial, although previous results obtained using yeast, have indicated that edelfosine associates with …
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Role of diacylglycerol in the cellular response to lysophosphatidylcholine analogues
… with the lysophosphatidylcholine analogue edelfosine. We hypothesized that by manipulating levels of PA and DAG, cells confer resistance to edelfosine, possibly due to mislocalized PA and DAG which prevent cellular response to edelfosine. Experiment where PA and DAG levels were manipulated …
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Characterisation of the pre-invasion glycophosphatidylinositol-anchored surface proteins of Plasmodium falciparum merozoites
… to be harvested. Four compounds (vanadate, edelfosine, dioctyl sodium sulfosuccinate (DSS), and gentamicin) suspected to interfere with GPIanchored cleavage or processes were screened on intraerythrocytic stages and merozoites. Antimalarial and anti-invasive properties of these compounds …
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TRP channels and a dextran sulfate activated rise in intracellular Ca2+ and Na+ in a subpopulation of double positive thymocytes
… is necessary as their inhibition by LY294002 and edelfosine, respectively, abolished the rises. The rises do not involve store release via IP3 receptors and SOCE, suggesting that either PIP2 hydrolysis and/or DAG generation lead to channel activation. Both, disruption of F-actin polymerization and …
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TRP channels and a dextran sulfate activated rise in intracellular Ca2+ and Na+ in a subpopulation of double positive thymocytes
… is necessary as their inhibition by LY294002 and edelfosine, respectively, abolished the rises. The rises do not involve store release via IP3 receptors and SOCE, suggesting that either PIP2 hydrolysis and/or DAG generation lead to channel activation. Both, disruption of F-actin polymerization and …