AbstractImlay and Linn show that exposure of logarithmically growing Escherichia coli to hydrogen peroxide (H2O2) leads to two kinetically distinguishable modes of cell killing. Mode one killing is pronounced near 1 mM concentration of H2O2 and is caused by DNA damage, whereas mode-two killing requires higher concentration (>10 mM). The second mode seems to be essentially due to damage to all macromolecules. This phenomenon has also been observed in Fenton in vitro systems with DNA nicking caused by hydroxyl radical (HO•).To our knowledge, there is currently no mathematical model for predicting mode one killing in vitro or in vivo after H2O2 exposure.We propose a simple model, using Escherichia coli as a model organism and a set of ordinary...
Hydrogen peroxide (H2O2) toxicity has long been thought to be predominantly due to oxidative DNA dam...
Role of yaaA in hydrogen peroxide stress response in Escherichia coli Hydrogen peroxide (H2O2) is...
Hydrogen peroxide (H2O2) has established itself as a key player in stress and programmed cell death ...
Imlay and Linn show that exposure of logarithmically growing Escherichia coli to hydrogen peroxide (...
AbstractImlay and Linn show that exposure of logarithmically growing Escherichia coli to hydrogen pe...
International audienceWe recently developed a mathematical model for predicting reactive oxygen spec...
We recently developed a mathematical model for predicting reactive oxygen species (ROS) concentratio...
<div><p>We recently developed a mathematical model for predicting reactive oxygen species (ROS) conc...
Reactive oxygen species produce oxidized bases, deoxyribose lesions and DNA strand breaks in mammali...
Current evidence suggests that O2- and H2O2 injure cells as a result of the generation of a more pot...
The bactericidal mechanism of hydrogen peroxide is poorly understood, with most evidence being obtai...
Hydrogen peroxide (H2O2) can oxidize cytoplasmic ferrous ions (Fe2+) to produce highly reactive hydr...
Hydrogen peroxide is extensively used as a biocide, particularly in applications where its decomposi...
<div><p>Hydrogen peroxide (H<sub>2</sub>O<sub>2</sub>) is used by phagocytic cells of the innate imm...
Unicellular organisms have the prevalent challenge to survive under oxidative stress of reactive oxy...
Hydrogen peroxide (H2O2) toxicity has long been thought to be predominantly due to oxidative DNA dam...
Role of yaaA in hydrogen peroxide stress response in Escherichia coli Hydrogen peroxide (H2O2) is...
Hydrogen peroxide (H2O2) has established itself as a key player in stress and programmed cell death ...
Imlay and Linn show that exposure of logarithmically growing Escherichia coli to hydrogen peroxide (...
AbstractImlay and Linn show that exposure of logarithmically growing Escherichia coli to hydrogen pe...
International audienceWe recently developed a mathematical model for predicting reactive oxygen spec...
We recently developed a mathematical model for predicting reactive oxygen species (ROS) concentratio...
<div><p>We recently developed a mathematical model for predicting reactive oxygen species (ROS) conc...
Reactive oxygen species produce oxidized bases, deoxyribose lesions and DNA strand breaks in mammali...
Current evidence suggests that O2- and H2O2 injure cells as a result of the generation of a more pot...
The bactericidal mechanism of hydrogen peroxide is poorly understood, with most evidence being obtai...
Hydrogen peroxide (H2O2) can oxidize cytoplasmic ferrous ions (Fe2+) to produce highly reactive hydr...
Hydrogen peroxide is extensively used as a biocide, particularly in applications where its decomposi...
<div><p>Hydrogen peroxide (H<sub>2</sub>O<sub>2</sub>) is used by phagocytic cells of the innate imm...
Unicellular organisms have the prevalent challenge to survive under oxidative stress of reactive oxy...
Hydrogen peroxide (H2O2) toxicity has long been thought to be predominantly due to oxidative DNA dam...
Role of yaaA in hydrogen peroxide stress response in Escherichia coli Hydrogen peroxide (H2O2) is...
Hydrogen peroxide (H2O2) has established itself as a key player in stress and programmed cell death ...