Background Microtubules have been one of the most effective targets for the development of anticancer agents. Cancer cells treated by these agents are characterized by cell arrest at G2/M phase. Microtubule-targeting drugs are, therefore, referred to as antimitotic agents. However, the clinical application of the current antimitotic drugs is hampered by emerging drug resistance which is the major cause of cancer treatment failure. The clinical success of antimitotic drugs and emerging drug resistance has prompted a search for new antimitotic agents, especially those with novel mechanisms of action. The aim of this study was to determine whether microtubules can be S-glutathionylated in cancer cells and whether the glutathionylation will ...
SummaryA recent screen for compounds that selectively targeted pancreatic cancer cells isolated UA62...
With several successful anticancer drugs on the market and numerous compounds in clinical developmen...
Microtubules are crucial targets for cancer chemotherapeutic drugs, and new microtubule-directed age...
Abstract Background Microtubules have been one of the most effective targets for the development of ...
International audienceMicrotubules are still a promising target for new therapeutic agents. Thus, th...
Microtubule targeting drugs like taxanes, vinca alkaloids, and epothilones are widely-used and effec...
Microtubules, composed of alpha beta tubulin dimers, are dynamic polymers of eukaryotic cells. They ...
Microtubule-targeting agents are widely used as clinical drugs in the treatment of cancer. However, ...
Drugs inhibiting microtubule dynamics are widely used in the treatment of various types of cancer....
Microtubules are dynamic polymers of the protein tubulin. The dynamic property of microtubules allo...
Microtubules (MTs) play important and diverse roles in eukaryotic cells. Their function and biophysi...
International audienceCompounds targeting microtubules are widely used in cancer therapy with a prov...
Thesis (Ph.D.)--University of Washington, 2016-02Glioblastoma multiforme (GBM) is a devastating and ...
Microtubules are critical for a variety of cellular processes such as chromosome segregation, intrac...
Microtubule inhibitors are invaluable tools in cancer chemotherapy: taxanes and vinca alkaloids have...
SummaryA recent screen for compounds that selectively targeted pancreatic cancer cells isolated UA62...
With several successful anticancer drugs on the market and numerous compounds in clinical developmen...
Microtubules are crucial targets for cancer chemotherapeutic drugs, and new microtubule-directed age...
Abstract Background Microtubules have been one of the most effective targets for the development of ...
International audienceMicrotubules are still a promising target for new therapeutic agents. Thus, th...
Microtubule targeting drugs like taxanes, vinca alkaloids, and epothilones are widely-used and effec...
Microtubules, composed of alpha beta tubulin dimers, are dynamic polymers of eukaryotic cells. They ...
Microtubule-targeting agents are widely used as clinical drugs in the treatment of cancer. However, ...
Drugs inhibiting microtubule dynamics are widely used in the treatment of various types of cancer....
Microtubules are dynamic polymers of the protein tubulin. The dynamic property of microtubules allo...
Microtubules (MTs) play important and diverse roles in eukaryotic cells. Their function and biophysi...
International audienceCompounds targeting microtubules are widely used in cancer therapy with a prov...
Thesis (Ph.D.)--University of Washington, 2016-02Glioblastoma multiforme (GBM) is a devastating and ...
Microtubules are critical for a variety of cellular processes such as chromosome segregation, intrac...
Microtubule inhibitors are invaluable tools in cancer chemotherapy: taxanes and vinca alkaloids have...
SummaryA recent screen for compounds that selectively targeted pancreatic cancer cells isolated UA62...
With several successful anticancer drugs on the market and numerous compounds in clinical developmen...
Microtubules are crucial targets for cancer chemotherapeutic drugs, and new microtubule-directed age...