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1.
Physiologie ; 15(2): 127-31, 1978.
Article in English | MEDLINE | ID: mdl-27830

ABSTRACT

The experiment is aimed at establishing the consequences of the endotoxic stress (TAB) associated with alpha- or beta-adrenergic selective blocking drugs on the course of the acute irradiation disease in rats (700R, gamma rad Co60). TAB administered before or after irradiation, alone or associated with propranolol, increases the surviving rate at 30 and 60 days from exposure as compared to the controls (LD 95/30 days). Generally, dibenzyline has unfavourable effects on mortality and survival rate at the mentioned intervals. Based on the data obtained, an adrenergic component is analysed in achieving the survival increase by TAB and beta-adrenergic blocking substances; a hypothesis about the mechanisms involved is advanced.


Subject(s)
Adrenergic beta-Antagonists/pharmacology , Radiation Injuries, Experimental/drug therapy , Typhoid-Paratyphoid Vaccines/therapeutic use , Animals , Female , Male , Phenoxybenzamine/pharmacology , Propranolol/pharmacology , Rats
2.
Physiologie ; 13(4): 285-91, 1976.
Article in English | MEDLINE | ID: mdl-828747

ABSTRACT

The investigations have been performed on Wistar rats intoxicated with paraoxon in toxic sublethal doses. There have been measured the variations of rectal temperature at various time periods following the anticholinesterase agent. The authors established the pharmacodynamic correlations of paraoxon-induced hypothermia with cholinesterase reactivators (toxogonin, isonitrosine), anticholinergic substances (atropine, butylscopolamine), carbamic anticholinesterase (eserine, neoeserine) and chlorpromazine. The efficiency of atropine and cholinesterase reactivators in antagonization of hypothermia induced by organophosphorics on the one hand, and only of atropine against hypothermia induced by carbamates on the other hand allow the hypothesis of a central cholinergic mechanism, predominantly muscarinic, involved in hypothermia induced by anticholinesterasics and of a direct correlation of this mechanism with phosphorylation or carbamylation processes of cerebral cholinesterases.


Subject(s)
Cholinesterase Inhibitors , Hypothermia/chemically induced , Animals , Atropine/pharmacology , Body Temperature Regulation/drug effects , Brain/enzymology , Butylscopolammonium Bromide/pharmacology , Chlorpromazine/pharmacology , Cholinesterase Reactivators/pharmacology , Cholinesterases/metabolism , Female , Paraoxon , Parasympathetic Nervous System/drug effects , Physostigmine/pharmacology , Rats
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