Davies L P, Barlin G B, Ireland S J, Ngu M M
Research School of Biological Sciences, Australian National University, Canberra.
Biochem Pharmacol. 1992 Oct 20;44(8):1555-61. doi: 10.1016/0006-2952(92)90472-u.
A large range of substituted imidazo[1,2-b]pyridazines have been synthesized, and a number of potent ligands at central benzodiazepine (Bz) receptors on rat brain membranes have been identified in initial binding screens using [3H]diazepam. For those tested more extensively, binding studies conducted in the presence and absence of gamma-aminobutyric acid suggest that they were full receptor agonists. Some preliminary evidence was found suggesting some species selectivity, i.e. several of the compounds were more active in in vivo tests in rats than in mice. The agonist activity of these 2-phenyl (and substituted phenyl) imidazo[1,2-b]pyridazines is consistent with the model of Bz receptor ligands as proposed by Fryer [Raven Press, 1983, pp. 7-20]. Several compounds were identified which had more selective activity at peripheral-type (mitochondrial) Bz binding sites. Thus, substituted imidazo[1,2-b]pyridazines represent yet another class of low molecular mass compounds which have activity at Bz receptor sites.
已经合成了大量的取代咪唑并[1,2 - b]哒嗪,并且在使用[3H]地西泮的初始结合筛选中,在大鼠脑膜上的中枢苯二氮䓬(Bz)受体处鉴定出了许多强效配体。对于那些进行了更广泛测试的配体,在有和没有γ-氨基丁酸存在的情况下进行的结合研究表明它们是完全受体激动剂。发现了一些初步证据表明存在某种物种选择性,即几种化合物在大鼠体内试验中的活性比在小鼠体内试验中的活性更高。这些2 - 苯基(和取代苯基)咪唑并[1,2 - b]哒嗪的激动剂活性与Fryer提出的Bz受体配体模型一致[Raven出版社,1983年,第7 - 20页]。鉴定出了几种在外周型(线粒体)Bz结合位点具有更具选择性活性的化合物。因此,取代咪唑并[1,2 - b]哒嗪代表了另一类在Bz受体位点具有活性的低分子量化合物。