DeNinno M P, Schoenleber R, Perner R J, Lijewski L, Asin K E, Britton D R, MacKenzie R, Kebabian J W
Neuroscience Research, Pharmaceutical Discovery, Abbott Laboratories, Abbott Park, Illinois 60064.
J Med Chem. 1991 Aug;34(8):2561-9. doi: 10.1021/jm00112a034.
The synthesis and dopaminergic activity of a series of C3 and nitrogen-substituted 1-(aminomethyl)-3,4-dihydro-5,6-dihydroxy-1H-2-benzopyrans (isochromans) is described. The synthesis of the compounds was stereospecific for the 1,3 cis isomer, and the enantioselective synthesis of both enantiomers of one of the analogues (20) was achieved. It was determined that all of the dopaminergic activity resides in the [1R,3S] isomer. Generally, substitution at the C3 position provided compounds with very high potency (less than 10 nm EC50) and selectivity for the D1 receptor, with a wide range of intrinsic activities (60-160%). Analogues containing C3 substituents including aryl, arylalkyl, and cyclic and acyclic alkyl groups showed a marked enhancement of dopaminergic activity compared to the unsubstituted compound. As a class, the drugs were orally active in the rat rotation model with a very long duration of action.
描述了一系列C3和氮取代的1-(氨甲基)-3,4-二氢-5,6-二羟基-1H-2-苯并吡喃(异色满)的合成及其多巴胺能活性。这些化合物的合成对于1,3-顺式异构体具有立体专一性,并且实现了其中一种类似物(20)的两种对映体的对映选择性合成。已确定所有多巴胺能活性都存在于[1R,3S]异构体中。一般来说,在C3位置进行取代可使化合物具有非常高的效力(EC50小于10 nM)和对D1受体的选择性,具有广泛的内在活性(60-160%)。与未取代的化合物相比,含有C3取代基(包括芳基、芳基烷基以及环状和非环状烷基)的类似物显示出多巴胺能活性的显著增强。作为一类药物,它们在大鼠旋转模型中口服具有活性,且作用持续时间非常长。