Malan S F, Van der Walt J J, Van der Schyf C J
Potchefstroom University for Christian Higher Education, Potchefstroom, South Africa.
Arch Pharm (Weinheim). 2000 Jan;333(1):10-6. doi: 10.1002/(sici)1521-4184(200001)333:1<10::aid-ardp10>3.0.co;2-5.
8-Benzylamino-8, 11-oxapentacyclo[5.4.0.0(2,6).0(3,10).0(5,9)]undecane (1) inhibits the calcium current in L-type calcium channels. A series of nitrobenzylamines (2, 3, 4), methoxybenzylamines (5, 6, 7), methylpyridines (8, 9, 10), and a phenylhydrazine derivative (11) of 8,11-oxapentacyclo[5.4.0.0(2,6).0(3,10).0(5,9)]undecane was synthesized. By substituting the 8,11-oxapentacyclo-[5.4.0.0(2,6).0(3,10).0(5,9)]undecane skeleton with 3-hydroxyhexacyclo-[6.5.0.0(3,7).0(4,12).0(5,10).0(9,13)]tridec ane (12), 8,13-dioxapentacyclo[6.5.0.0(2,6).0(5,10).0(3,11)]tridecane- 9-one (13), and pentacyclo-[5.4.0.0(2,6).0(3,10).0(5,9)]undecane (14), the effect of the polycyclic skeleton could also be investigated. Increased inhibition of calcium current was observed with aromatic substitution (especially ortho and meta substitution) in the pentacycloundecane series. The calcium channel activities of the methoxy compounds were slightly higher than those of the corresponding nitro compounds while a definite decrease in activity was observed for the phenylhydrazine and aminomethylpyridine derivatives. Increased inhibition of the calcium current was also observed for structures in which the polycyclic 'cages' were enlarged. Structure-activity relationships in this series of compounds therefore appear to be dominated by geometric or steric constraints.
8-苄基氨基-8,11-氧杂五环[5.4.0.0(2,6).0(3,10).0(5,9)]十一烷(1)可抑制L型钙通道中的钙电流。合成了一系列8,11-氧杂五环[5.4.0.0(2,6).0(3,10).0(5,9)]十一烷的硝基苄胺(2、3、4)、甲氧基苄胺(5、6、7)、甲基吡啶(8、9、10)以及一种苯肼衍生物(11)。通过用3-羟基六环[6.5.0.0(3,7).0(4,12).0(5,10).0(9,13)]十三烷(12)、8,13-二氧杂五环[