SummaryThe development of new anticancer agents derived from natural resources requires a rapid identification of their molecular mechanism of action. To make this step short, we have initiated the proteomic profiling of HeLa cells treated with anticancer drugs representing a wide spectrum of mechanisms of action using two-dimensional difference gel electrophoresis (2D-DIGE). Unique proteome patterns were observed in HeLa cells treated with the HSP90 inhibitor geldanamycin, and were similar to the patterns induced by radicicol, a structurally different HSP90 inhibitor. On the other hand, etoposide and ICRF-193, compounds claimed to be topoisomerase II inhibitors, showed different proteomic profiles, which reflect their different biological ...
In drug discovery and development, characterization of the drug targets and mechanisms of action is ...
The preclinical study of the mechanism of action of anticancer small molecules is challenging due to...
We have previously shown that specific COX-2 inhibitors, including DuP 697, have anti-proliferative ...
SummaryThe development of new anticancer agents derived from natural resources requires a rapid iden...
The development of new anticancer agents derived from natural resources requires arapid identificati...
HepG-2 cells are widely used as a cell model to investigate hepatocellular carcinomas and the effect...
Deconvolution of targets and action mechanisms of anticancer compounds is fundamental in drug develo...
The aim of this study was to use two-dimensional electrophoresis (2-DE) coupled with multivariate pr...
Epidermal growth factor receptor is a potential target for cancer treatment and new small-molecule t...
The preclinical study of the mechanism of action of anticancer small molecules is challenging due to...
DIGE (difference in gel electrophoresis) proteomics is exploited here to gain insight into the molec...
The preclinical study of the mechanism of action of anticancer small molecules is challenging due to...
Doxorubicin, an anthracycline antitumor drug, is widely used in the treatment of human breast cancer...
DIGE (difference in gel electrophoresis) proteomics is exploited here to gain insight into the molec...
In drug discovery and development, characterization of the drug targets and mechanisms of action is ...
The preclinical study of the mechanism of action of anticancer small molecules is challenging due to...
We have previously shown that specific COX-2 inhibitors, including DuP 697, have anti-proliferative ...
SummaryThe development of new anticancer agents derived from natural resources requires a rapid iden...
The development of new anticancer agents derived from natural resources requires arapid identificati...
HepG-2 cells are widely used as a cell model to investigate hepatocellular carcinomas and the effect...
Deconvolution of targets and action mechanisms of anticancer compounds is fundamental in drug develo...
The aim of this study was to use two-dimensional electrophoresis (2-DE) coupled with multivariate pr...
Epidermal growth factor receptor is a potential target for cancer treatment and new small-molecule t...
The preclinical study of the mechanism of action of anticancer small molecules is challenging due to...
DIGE (difference in gel electrophoresis) proteomics is exploited here to gain insight into the molec...
The preclinical study of the mechanism of action of anticancer small molecules is challenging due to...
Doxorubicin, an anthracycline antitumor drug, is widely used in the treatment of human breast cancer...
DIGE (difference in gel electrophoresis) proteomics is exploited here to gain insight into the molec...
In drug discovery and development, characterization of the drug targets and mechanisms of action is ...
The preclinical study of the mechanism of action of anticancer small molecules is challenging due to...
We have previously shown that specific COX-2 inhibitors, including DuP 697, have anti-proliferative ...