The effects of atropine, diazepam and pralidoxime were studied for their ability to block the pathological lesions induced by sarin. Rats were exposed to an aerosol of sarin at a concentration of 51.2mg-m for 15 min f...The effects of atropine, diazepam and pralidoxime were studied for their ability to block the pathological lesions induced by sarin. Rats were exposed to an aerosol of sarin at a concentration of 51.2mg-m for 15 min following the pretreatment with one of the following combinations: atropine (10 mg/kg, i.m.) and diazepam (0.5 mg/kg, i.m.); atropine and pralidoxime (25 mg/kg, i.m.); diazepam and pralidoxime; atropine, diazepam and pralidoxime. Lung exposed to sarin aerosols revealed an increased cellular proliferation with progressive diffused interstitial thickening on the 4th day following exposure. On the 16th day, loss of alveolar space and consolidation of large areas of all lobes were observed. Sarin also caused damage to the respiratory bronchioles. All the therapy regime blocked the development of lung lesions in the descending orders: atropine, diazepam and pralidoxime, atropine and diazepam > diazepam and pralidoxime > atropine and pralidoxime. The result suggests that diazepam in combination with atropine and pralidoxime could be an effective drug combination regime for the lung lesions.展开更多
The present study was designed to ascertain the in vivo protective efficacy of Ca2+ channel blockers against dermally applied sulphny mustard (SM). Male albino mice were exposed to 1. 5 LD50 of SM (232 mg/kg) percutan...The present study was designed to ascertain the in vivo protective efficacy of Ca2+ channel blockers against dermally applied sulphny mustard (SM). Male albino mice were exposed to 1. 5 LD50 of SM (232 mg/kg) percutaneously and the control group received an equal volume of vehicle (polyethylene glycol 300). Prior to SM application, the animals were administered nifedipine and dextrose saline containing antibiotic by intraperitoneal route. The protection assessed by the mean survival time (MST) was determined by Dunnett's method. The MST was significantly increased in nifedipine treated group.The characteristic biochemical indices of SM intoxication, i. e. lipid peroxidation and reduced glutathione (GSH) were determined in liver from animals sacrificed at 24, 48 and 72 h after exposure. SM application (1 LD50) caused a reduction in GSH level which was restored in nifedipine treated group. SM-induced lipid peroxidation was also prevented by nifedipine administration. The protective effect of nifedipine may be related to its capacity of attenuating SM-induced lipid peroxidation and glutathione depletion展开更多
文摘The effects of atropine, diazepam and pralidoxime were studied for their ability to block the pathological lesions induced by sarin. Rats were exposed to an aerosol of sarin at a concentration of 51.2mg-m for 15 min following the pretreatment with one of the following combinations: atropine (10 mg/kg, i.m.) and diazepam (0.5 mg/kg, i.m.); atropine and pralidoxime (25 mg/kg, i.m.); diazepam and pralidoxime; atropine, diazepam and pralidoxime. Lung exposed to sarin aerosols revealed an increased cellular proliferation with progressive diffused interstitial thickening on the 4th day following exposure. On the 16th day, loss of alveolar space and consolidation of large areas of all lobes were observed. Sarin also caused damage to the respiratory bronchioles. All the therapy regime blocked the development of lung lesions in the descending orders: atropine, diazepam and pralidoxime, atropine and diazepam > diazepam and pralidoxime > atropine and pralidoxime. The result suggests that diazepam in combination with atropine and pralidoxime could be an effective drug combination regime for the lung lesions.
文摘The present study was designed to ascertain the in vivo protective efficacy of Ca2+ channel blockers against dermally applied sulphny mustard (SM). Male albino mice were exposed to 1. 5 LD50 of SM (232 mg/kg) percutaneously and the control group received an equal volume of vehicle (polyethylene glycol 300). Prior to SM application, the animals were administered nifedipine and dextrose saline containing antibiotic by intraperitoneal route. The protection assessed by the mean survival time (MST) was determined by Dunnett's method. The MST was significantly increased in nifedipine treated group.The characteristic biochemical indices of SM intoxication, i. e. lipid peroxidation and reduced glutathione (GSH) were determined in liver from animals sacrificed at 24, 48 and 72 h after exposure. SM application (1 LD50) caused a reduction in GSH level which was restored in nifedipine treated group. SM-induced lipid peroxidation was also prevented by nifedipine administration. The protective effect of nifedipine may be related to its capacity of attenuating SM-induced lipid peroxidation and glutathione depletion