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Dithiothreitol abrogates the effect of arsenic trioxide on normal rat liver mitochondria and human hepatocellular carcinoma cells
Manash K. Paul
*
, Rajinder Kumar
, Anup K. Mukhopadhyay
*
Corresponding author for this work
Department of Radiation Biology and Toxicology, Manipal School of Life Sciences, Manipal
Research output
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peer-review
51
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INIS
rats
100%
liver
100%
humans
100%
mitochondria
100%
hepatomas
100%
arsenic
100%
toxicity
21%
apoptosis
21%
concentration
15%
oxygen
10%
populations
10%
inhibition
10%
permeability
10%
leukemia
10%
iodine complexes
10%
dithiols
10%
food
5%
patients
5%
drugs
5%
cancer
5%
side effects
5%
water
5%
correlations
5%
modulation
5%
membranes
5%
depolarization
5%
electron transfer
5%
respiration
5%
Pharmacology, Toxicology and Pharmaceutical Science
Arsenite
100%
Dithiothreitol
100%
Liver Cell Carcinoma
100%
Arsenous Acid
100%
Hepatotoxicity
13%
Leukemia
13%
Reactive Oxygen Metabolite
13%
Arsenic Toxicity
13%
Dithiol Derivative
6%
Antiinfective Agent
6%
Side Effect
6%
Liver Cancer
6%
Respiration Depression
6%
Thiol
6%