AbstractThe brainstem represents a major tissue area affected by sarin organophosphate poisoning due to its function in respiratory and cardiovascular control. While the acute toxic effects of sarin on brainstem-related responses are relatively unknown, other brain areas e.g., cortex or cerebellum, have been studied more extensively. The study objective was to analyze the guinea pig brainstem toxicology response following sarin (2×LD50) exposure by proteome pathway analysis to gain insight into the complex regulatory mechanisms that lead to impairment of respiratory and cardiovascular control. Guinea pig exposure to sarin resulted in the typical acute behavior/physiology outcomes with death between 15 and 25min. In addition, brain and blood...
Acute exposure to high concentrations of H2S causes severe brain injury and long-term neurological d...
We report the first toxicokinetic studies of (±)-sarin. The toxicokinetics of the stereoisomers of t...
Ricin is one of the most poisonous natural toxins from plants and is classified as a Class B biologi...
AbstractThe brainstem represents a major tissue area affected by sarin organophosphate poisoning due...
Sarin is an organophosphorus (OP) ester chemical warfare agent (CWA) that has been used in past terr...
Abstract Background Organophosphorus nerve agents irreversibly inhibit acetylcholinesterase, causing...
Sarin (CASRN: 107-44-8) is a highly toxic organophosphorus nerve agent that was developed for chemic...
Organophosphates (OP) cause CNS hyperstimulation resulting in seizures, convulsions and brain damage...
Objective This study aimed to identify persistent morphological changes subsequent to an acute singl...
Delayed neurotoxicity of an organophosphorus nerve gas Sarin (a chemical warfare agent) following ...
International audienceWarfare neurotoxicants such as sarin, soman or VX, are organophosphorus compou...
Sarin is a highly toxic nerve agent that was developed for chemical warfare during World War II and ...
Sarin (GB) is a toxic organophosphate (OP) nerve agent that was released in the Gulf War and was use...
Acute exposure to high concentrations of H2S causes severe brain injury and long-term neurological d...
We report the first toxicokinetic studies of (±)-sarin. The toxicokinetics of the stereoisomers of t...
Ricin is one of the most poisonous natural toxins from plants and is classified as a Class B biologi...
AbstractThe brainstem represents a major tissue area affected by sarin organophosphate poisoning due...
Sarin is an organophosphorus (OP) ester chemical warfare agent (CWA) that has been used in past terr...
Abstract Background Organophosphorus nerve agents irreversibly inhibit acetylcholinesterase, causing...
Sarin (CASRN: 107-44-8) is a highly toxic organophosphorus nerve agent that was developed for chemic...
Organophosphates (OP) cause CNS hyperstimulation resulting in seizures, convulsions and brain damage...
Objective This study aimed to identify persistent morphological changes subsequent to an acute singl...
Delayed neurotoxicity of an organophosphorus nerve gas Sarin (a chemical warfare agent) following ...
International audienceWarfare neurotoxicants such as sarin, soman or VX, are organophosphorus compou...
Sarin is a highly toxic nerve agent that was developed for chemical warfare during World War II and ...
Sarin (GB) is a toxic organophosphate (OP) nerve agent that was released in the Gulf War and was use...
Acute exposure to high concentrations of H2S causes severe brain injury and long-term neurological d...
We report the first toxicokinetic studies of (±)-sarin. The toxicokinetics of the stereoisomers of t...
Ricin is one of the most poisonous natural toxins from plants and is classified as a Class B biologi...