QUANTUM PHARMACOLOGICAL STUDIES APPLICABLE TO THE DESIGN OF ANTICONVULSANTS - THEORETICAL CONFORMATIONAL-ANALYSIS AND STRUCTURE-ACTIVITY STUDIES OF BARBITURATES

被引:15
作者
BIKKER, JA
KUBANEK, J
WEAVER, DF
机构
[1] QUEENS UNIV,DEPT MED NEUROL,KINGSTON K7L 3N6,ON,CANADA
[2] QUEENS UNIV,DEPT CHEM,KINGSTON K7L 3N6,ON,CANADA
关键词
ANTICONVULSANTS; STRUCTURE-ACTIVITY RELATIONSHIP; BARBITURATES;
D O I
10.1111/j.1528-1157.1994.tb02454.x
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
We report the first large-scale systematic quantitative structure-activity relationship (QSAR) study of barbiturates, correlating molecular structures with anticonvulsant activity. To achieve this QSAR study, we devised a four-step strategy. In step 1, an optimal quantum mechanical technique for determining the geometry and shape (conformation) of barbiturates was ascertained; this is the AM1 semiempirical molecular orbital method. In step 2, the AM1 method was used to optimize the structures and molecular properties of 48 barbiturates with varying anticonvulsant activity. In step 3, discriminant analysis and regression analysis statistical calculations were used to correlate the molecular properties of the 48 analogues against maximal electroshock (MES) and subcutaneous metrazol (s.c.Met)-induced seizures. In step 4, the contribution of molecular electostatic properties to barbiturate anticonvulsant activity was further refined by quantum mechanical derived molecular electrostatic potential (MEP) maps. Using this four-step strategy, we defined the pharmacophore, the portion of a molecule responsible for bioactivity, for anti-MES and anti-s.c.Met activity. For anti-s.c.Met activity, barbiturate lipophilicity and geometry are important considerations; for anti-MES activity, barbiturate topologic and electronic properties have increased relevance.
引用
收藏
页码:411 / 425
页数:15
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