The clinical development of anticancer metallodrugs is often hindered by the elusive nature of their molecular targets. To identify the molecular targets of an antimetastatic ruthenium organometallic complex based on 1,3,5-triaza-7-phosphaadamantane (RAPTA), we employed a chemical proteomic approach. The approach combines the design of an affinity probe featuring the pharmacophore with mass-spectrometry-based analysis of interacting proteins found in cancer cell lysates. The comparison of data sets obtained for cell lysates from cancer cells before and after treatment with a competitive binder suggests that RAPTA interacts with a number of cancer-related proteins, which may be responsible for the antiangiogenic and antimetastatic activity o...
DIGE (difference in gel electrophoresis) proteomics is exploited here to gain insight into the molec...
DIGE (difference in gel electrophoresis) proteomics is exploited here to gain insight into the molec...
DIGE (difference in gel electrophoresis) proteomics is exploited here to gain insight into the molec...
The clinical development of anticancer metallodrugs is often hindered by the elusive nature of their...
The emerging technique termed functional identification of target by expression proteomics (FITExP) ...
© 2015 Elsevier B.V. Ruthenium(II)-arene RAPTA-type compounds have been extensively explored for the...
© 2015 Elsevier B.V. Ruthenium(II)-arene RAPTA-type compounds have been extensively explored for the...
Based on the clinical success of platinum-based anti-cancer drugs such as cisplatin, carboplatin and...
DIGE (difference in gel electrophoresis) proteomics is exploited here to gain insight into the molec...
An approach to characterize the interactions of RAPTA-T, a novel ruthenium-based anticancer drug can...
DIGE (difference in gel electrophoresis) proteomics is exploited here to gain insight into the molec...
Electrospray ionisation mass spectrometry was used to analyse the reactions of metal compounds with ...
DIGE (difference in gel electrophoresis) proteomics is exploited here to gain insight into the molec...
DIGE (difference in gel electrophoresis) proteomics is exploited here to gain insight into the molec...
DIGE (difference in gel electrophoresis) proteomics is exploited here to gain insight into the molec...
DIGE (difference in gel electrophoresis) proteomics is exploited here to gain insight into the molec...
DIGE (difference in gel electrophoresis) proteomics is exploited here to gain insight into the molec...
DIGE (difference in gel electrophoresis) proteomics is exploited here to gain insight into the molec...
The clinical development of anticancer metallodrugs is often hindered by the elusive nature of their...
The emerging technique termed functional identification of target by expression proteomics (FITExP) ...
© 2015 Elsevier B.V. Ruthenium(II)-arene RAPTA-type compounds have been extensively explored for the...
© 2015 Elsevier B.V. Ruthenium(II)-arene RAPTA-type compounds have been extensively explored for the...
Based on the clinical success of platinum-based anti-cancer drugs such as cisplatin, carboplatin and...
DIGE (difference in gel electrophoresis) proteomics is exploited here to gain insight into the molec...
An approach to characterize the interactions of RAPTA-T, a novel ruthenium-based anticancer drug can...
DIGE (difference in gel electrophoresis) proteomics is exploited here to gain insight into the molec...
Electrospray ionisation mass spectrometry was used to analyse the reactions of metal compounds with ...
DIGE (difference in gel electrophoresis) proteomics is exploited here to gain insight into the molec...
DIGE (difference in gel electrophoresis) proteomics is exploited here to gain insight into the molec...
DIGE (difference in gel electrophoresis) proteomics is exploited here to gain insight into the molec...
DIGE (difference in gel electrophoresis) proteomics is exploited here to gain insight into the molec...
DIGE (difference in gel electrophoresis) proteomics is exploited here to gain insight into the molec...
DIGE (difference in gel electrophoresis) proteomics is exploited here to gain insight into the molec...