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author Jaffrézou, Jean-Pierre
Laurent, Guy
spellingShingle Jaffrézou, Jean-Pierre
Laurent, Guy
FEBS Letters
The intriguing link between modulation of both multidrug resistance and ligand‐toxin conjugate cytotoxicity
Cell Biology
Genetics
Molecular Biology
Biochemistry
Structural Biology
Biophysics
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title The intriguing link between modulation of both multidrug resistance and ligand‐toxin conjugate cytotoxicity
title_unstemmed The intriguing link between modulation of both multidrug resistance and ligand‐toxin conjugate cytotoxicity
title_full The intriguing link between modulation of both multidrug resistance and ligand‐toxin conjugate cytotoxicity
title_fullStr The intriguing link between modulation of both multidrug resistance and ligand‐toxin conjugate cytotoxicity
title_full_unstemmed The intriguing link between modulation of both multidrug resistance and ligand‐toxin conjugate cytotoxicity
title_short The intriguing link between modulation of both multidrug resistance and ligand‐toxin conjugate cytotoxicity
title_sort the intriguing link between modulation of both multidrug resistance and ligand‐toxin conjugate cytotoxicity
topic Cell Biology
Genetics
Molecular Biology
Biochemistry
Structural Biology
Biophysics
url http://dx.doi.org/10.1016/0014-5793(93)81337-y
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author Jaffrézou, Jean-Pierre, Laurent, Guy
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description <jats:p>Pharmacological agents which possess a chemosensitizing activity (i.e. the ability to modulate the multidrug resistance phenotype) can equally enhance ligand‐toxin conjugate cytotoxicity. By confronting results obtained in both fields of research it appears that quite a number of agents, which are structurally unrelated, possess this bilateral effect. We have therefore attempted to provide a brief review of the literature and to discuss a hypothesis by which a common mechanism such as modifications in intracellular vesicle sorting and/or lipid metabolism may be implicated. We believe that these observations may provide clues for future research.</jats:p>
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spelling Jaffrézou, Jean-Pierre Laurent, Guy 0014-5793 1873-3468 Wiley Cell Biology Genetics Molecular Biology Biochemistry Structural Biology Biophysics http://dx.doi.org/10.1016/0014-5793(93)81337-y <jats:p>Pharmacological agents which possess a chemosensitizing activity (i.e. the ability to modulate the multidrug resistance phenotype) can equally enhance ligand‐toxin conjugate cytotoxicity. By confronting results obtained in both fields of research it appears that quite a number of agents, which are structurally unrelated, possess this bilateral effect. We have therefore attempted to provide a brief review of the literature and to discuss a hypothesis by which a common mechanism such as modifications in intracellular vesicle sorting and/or lipid metabolism may be implicated. We believe that these observations may provide clues for future research.</jats:p> The intriguing link between modulation of both multidrug resistance and ligand‐toxin conjugate cytotoxicity FEBS Letters
spellingShingle Jaffrézou, Jean-Pierre, Laurent, Guy, FEBS Letters, The intriguing link between modulation of both multidrug resistance and ligand‐toxin conjugate cytotoxicity, Cell Biology, Genetics, Molecular Biology, Biochemistry, Structural Biology, Biophysics
title The intriguing link between modulation of both multidrug resistance and ligand‐toxin conjugate cytotoxicity
title_full The intriguing link between modulation of both multidrug resistance and ligand‐toxin conjugate cytotoxicity
title_fullStr The intriguing link between modulation of both multidrug resistance and ligand‐toxin conjugate cytotoxicity
title_full_unstemmed The intriguing link between modulation of both multidrug resistance and ligand‐toxin conjugate cytotoxicity
title_short The intriguing link between modulation of both multidrug resistance and ligand‐toxin conjugate cytotoxicity
title_sort the intriguing link between modulation of both multidrug resistance and ligand‐toxin conjugate cytotoxicity
title_unstemmed The intriguing link between modulation of both multidrug resistance and ligand‐toxin conjugate cytotoxicity
topic Cell Biology, Genetics, Molecular Biology, Biochemistry, Structural Biology, Biophysics
url http://dx.doi.org/10.1016/0014-5793(93)81337-y