The inhibition of respiratory chain activities in rat liver, rat heart and bovine heart mitochondria by the anthracycline antibiotic adriamycin was measured in order to determine the adriamycin-sensitive sites. It appeared that complex III and IV are efficiently affected such that their activities were reduced to 50% of control values at 175 ± 25 µM adriamycin. Complex I displayed a minor sensitivity to the drug. Of the complex-I-related activities tested, only duroquinone oxidation appeared sensitive (50% inhibition at approx. 450 µM adriamycin). Electron-transfer activities catalyzed by complex II remained essentially unaltered up to high drug concentrations. Of the activities measured for this complex, only duroquinone oxidation was sign...
The inhibitory action of the anticancer antibiotic, Adriamycin, on succinate-dependent oxidative pho...
The inhibitory action of the anticancer antibiotic, Adriamycin, on succinate-dependent oxidative pho...
Adriamycin was shown to affect electron transport in the inner mitochondrial membrane in two ways. I...
The inhibition of respiratory chain activities in rat liver, rat heart and bovine heart mitochondria...
The inhibition of respiratory chain activities in rat liver, rat heart and bovine heart mitochondria...
The inhibition of respiratory chain activities in rat liver, rat heart and bovine heart mitochondria...
The inhibition of respiratory chain activities in rat liver, rat heart and bovine heart mitochondria...
The antitumour antibiotic, adriamycin, inhibited oxidative phosphorylation in freshly prepared mitoc...
The antitumour antibiotic, adriamycin, inhibited oxidative phosphorylation in freshly prepared mitoc...
The interaction of adriamycin with cardiolipin in model membranes and in various membrane preparatio...
The interaction of adriamycin with cardiolipin in model membranes and in various membrane preparatio...
The interaction of adriamycin with cardiolipin in model membranes and in various membrane preparatio...
The interaction of adriamycin with cardiolipin in model membranes and in various membrane preparatio...
The interaction of adriamycin with cardiolipin in model membranes and in various membrane preparatio...
The major side-effect of the anthracycline anti-tumor drug adriamycin is a specific, dose-dependent ...
The inhibitory action of the anticancer antibiotic, Adriamycin, on succinate-dependent oxidative pho...
The inhibitory action of the anticancer antibiotic, Adriamycin, on succinate-dependent oxidative pho...
Adriamycin was shown to affect electron transport in the inner mitochondrial membrane in two ways. I...
The inhibition of respiratory chain activities in rat liver, rat heart and bovine heart mitochondria...
The inhibition of respiratory chain activities in rat liver, rat heart and bovine heart mitochondria...
The inhibition of respiratory chain activities in rat liver, rat heart and bovine heart mitochondria...
The inhibition of respiratory chain activities in rat liver, rat heart and bovine heart mitochondria...
The antitumour antibiotic, adriamycin, inhibited oxidative phosphorylation in freshly prepared mitoc...
The antitumour antibiotic, adriamycin, inhibited oxidative phosphorylation in freshly prepared mitoc...
The interaction of adriamycin with cardiolipin in model membranes and in various membrane preparatio...
The interaction of adriamycin with cardiolipin in model membranes and in various membrane preparatio...
The interaction of adriamycin with cardiolipin in model membranes and in various membrane preparatio...
The interaction of adriamycin with cardiolipin in model membranes and in various membrane preparatio...
The interaction of adriamycin with cardiolipin in model membranes and in various membrane preparatio...
The major side-effect of the anthracycline anti-tumor drug adriamycin is a specific, dose-dependent ...
The inhibitory action of the anticancer antibiotic, Adriamycin, on succinate-dependent oxidative pho...
The inhibitory action of the anticancer antibiotic, Adriamycin, on succinate-dependent oxidative pho...
Adriamycin was shown to affect electron transport in the inner mitochondrial membrane in two ways. I...