3-Phenoxypyridine 1-oxides as anticonvulsant agents
摘要:
The anticonvulsant activity of a series of 3-phenoxypyridine 1-oxides is described. An investigation carried out to optimize the activity/side effect ratio provided 4-methyl-3-phenoxypyridine 1-oxide, 3, as the derivative of choice. Overall, 3 has a pharmacological profile that is very similar to phenytoin. It exhibited significant anticonvulsant activity at doses that did not produce ataxia or sedation but caused increased spontaneous behavioral activity not seen with most anticonvulsants. The short duration of pharmacological effect of 3 was attributed to metabolic hydroxylation at the C-4 pyridine methyl group; however, structural modifications designed to inhibit this metabolic pathway were unsuccessful.
PAVIA, MICHAEL R.;TAYLOR, CHARLES P.;HERSHENSON, FRED M.;LOBBESTAEL, SAND+, J. MED. CHEM., 31,(1988) N 4, 841-847
作者:PAVIA, MICHAEL R.、TAYLOR, CHARLES P.、HERSHENSON, FRED M.、LOBBESTAEL, SAND+
DOI:——
日期:——
3-Phenoxypyridine 1-oxides as anticonvulsant agents
作者:Michael R. Pavia、Charles P. Taylor、Fred M. Hershenson、Sandra J. Lobbestael、Donald E. Butler
DOI:10.1021/jm00399a027
日期:1988.4
The anticonvulsant activity of a series of 3-phenoxypyridine 1-oxides is described. An investigation carried out to optimize the activity/side effect ratio provided 4-methyl-3-phenoxypyridine 1-oxide, 3, as the derivative of choice. Overall, 3 has a pharmacological profile that is very similar to phenytoin. It exhibited significant anticonvulsant activity at doses that did not produce ataxia or sedation but caused increased spontaneous behavioral activity not seen with most anticonvulsants. The short duration of pharmacological effect of 3 was attributed to metabolic hydroxylation at the C-4 pyridine methyl group; however, structural modifications designed to inhibit this metabolic pathway were unsuccessful.