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Synthesis and hypolipidemic evaluation of beta-alkylaminopropiophenone and beta-alkylaminopropio-2'-naphthone derivatives in rodents.

A series of beta-alkylamino-(4'-alkyl)-propiophenone or beta-alkylamino(7'-methyl)-propio-2'-naphthone derivatives were prepared and found to have hypolipidemic activity by lowering both serum cholesterol and triglyceride levels in rodents. The electron donating substituent at the para position of the phenyl ring seems to decrease the hypolipidemic activity when compared to non-substituted or electron withdrawing group substituted analogs as investigated previously in this laboratory. In comparison with lovastatin or clofibrate, most of these analogs showed similar or higher activity in lowering both serum cholesterol or triglyceride levels. beta-Pyrrolidino-(4'-methyl)-propiophenone (1) demonstrated the best activity after 16 d, i.p. administration in mice at 8 mg/kg/d. Further detailed studies in rats indicated that beta-pyrrolidino-(4'-methyl)-propiophenone also showed decreased serum cholesterol and triglyceride levels with increased HDL-cholesterol and triglyceride levels after 14 d. In hyperlipidemic mice and rats, this compound was observed to be effective in lowering serum lipid levels as well as tissue lipid levels. The activities of hepatic acetyl CoA synthetase, phosphatidylate phosphohydrolase, and hepatic lipoprotein lipase were moderately inhibited by beta-pyrrolidino-(4'-methyl)-propiophenone.

Animals↗

Down regulation of beta-receptors by bupropion and its major metabolite in mouse brain.

Mice were treated with bupropion Compound II (major metabolite of bupropion) or desmethylimpramine (DMI) twice a day intraperitoneally for either 1 or 3 weeks. The binding of dihydroalprenolol and spiroperidol in the frontal cortex and limbic forebrain areas were analyzed. There was a significant reduction in beta-receptors in the frontal cortex induced by DMI at both times examined. Bupropion showed a significant reduction of beta-receptor in the frontal cortex by 3 weeks. Though propiophenone did not have any significant effect on beta-receptors in the frontal cortex, it down-regulated beta-receptors in the limbic forebrain area significantly by 1 and 3 weeks. There was no significant effect of buropion or propiophenone on the binding of spiroperidol either in the cortex (S2 receptor) or in the limbic forebrain (dopaminergic). These results show that bupropion may exert part of its clinical effect through its metabolite propiophenone.

Animals↗

[Central muscle relaxant activities of 2-methyl-3-aminopropiophenone derivatives].

In this experiment, we synthetized new 2-methyl-3-aminopropiophenone (MP) derivatives, whose structure is known to have central muscle relaxant activities, and quinolizidine and indan . tetralin derivatives derived from MP by cyclization, and we investigated the central muscle relaxant activity. Among the quinolizidine derivatives, there was a very strong central depressant agent, trans (3H, 9aH)-3-(p-chloro) benzoyl-quinolizidine (HSR-740), and among the indan . tetralin derivatives, there was an excitant agents, trans (1H, 2H)-5-methoxy-3, 3-dimethyl-2-piperidinomethyl indan-1-ol (HSR-719). From the results, these derivatives were not considered to be adequate for central muscle relaxant. Among the MP derivatives, (4'-chloro-2'-methoxy-3-piperidino) propiophenone HCl (HSR-733) and (4'-ethyl-2-methyl-3-pyrrolidino) propiophenone HCl (HSR-770) strongly inhibited the cooperative movement in the rotating rod method using mice, and it exerted almost the same depressant activity on the cross extensor reflex using alpha-chloralose anesthetized rats. However, the inhibitory effects of HSR-733 on the anemic decerebrate rigidity and the rigidity induced by intracollicular decerebration in rats were weaker than those of HSR-770 and eperisone. In spinal cats, at a low dose (5 mg/kg, i.v.), HSR-733 depressed monosynaptic and dorsal root reflex potentials as compared with polysynaptic reflex potentials, and inhibitory effects of HSR-733 on these three reflex potentials were more potent than those of eperisone and HSR-770. Although HSR-770 acts on the spinal cord and supraspinal level on which eperisone has been reported to act, HSR-733 may mainly act on the spinal cord. These results indicate that the MP derivative with a 2-methyl group may be suitable as a central muscle relaxant. HSR-770, which has equipotent muscle relaxant activity to eperisone, exerted strong inhibitory effects on oxotremorine-induced tremor and weak inhibitory effects on spontaneous motor activity in the Animex method using mice, as compared with eperisone.

Animals↗

Synthesis and antitussive activity of 3-azabicyclo[3.2.2]nonane derivatives.

Mannich bases derived from a number of substituted acetophenones and propiophenones and 3-azabicyclo[3.2.2]nonane have been evaluated for antitussive activity. One of these compounds was as potent as codeine and dextromethorphan in its antitussive activity. The most potent compound of the series, 3-(3-azabicyclo[2.2.2]nonan-3-yl)-4'-benzyloxy-2-methyl propiophenone, also exhibited antimorphine activity. There was no direct correlation between the antitussive effect and antimorphine activity.

Animals↗

Local anaesthetic effects of benzene and structurally related molecules, including benzocaine, on the squid giant axon.

(1). The effects of benzene and several of its derivatives on sodium currents in the voltage-clamped squid giant axon have been studied. Substances tested were benzene, aniline, benzyl alcohol, propiophenone, 4-amino-propiophenone, methyl benzoate, ethyl benzoate, and 4-amino ethyl benzoate (benzocaine). (2.) All substances tested reduced the sodium current in both intact axons and axons internally perfused with CsF. (3.) There were four major actions of benzene on the sodium current: (a) an increase in the resting level of inactivation, (b) an increase in the depolarization required to produce the maximum current, (c) a decrease in the maximum sodium conductance, and (d) an increase in the rate of inactivation. (4.) 4-amino ethyl benzoate (benzocaine) had actions on the sodium current which were very similar to those of benzene with the exception that the rate of inactivation was scarcely affected and, at comparable shifts, the slope of the steady state inactivation curve was slightly smaller. (5.) The results obtained with the substances structurally intermediate between benzene and 4-amino ethyl benzoate allow some conclusions to be drawn as to the role of each functional group.

Anesthetics, Local↗