Iwata N, Kozuka M, Hara T, Kanek T, Tonohiro T, Sugimoto M, Niitsu Y, Kondo Y, Yamamoto T, Sakai J, Nagano M
Neuroscience and Immunology Research Laboratories, Sankyo Co., Ltd., Tokyo, Japan.
Jpn J Pharmacol. 2000 Nov;84(3):266-80. doi: 10.1254/jjp.84.266.
A newly synthesized agonist for muscarinic acetylcholine (ACh) receptors CS-932, (R)-3-(3-iso-xazoloxy)-1-azabicyclo-[2.2.2]octane hydrochloride, showed a relatively higher affinity for M1 than M2 receptors expressed in Chinese hamster ovary (CHO)-cells in comparison with ACh. CS-932 elevated the intracellular Ca2+ level only in M1-CHO cells, although ACh increased the level in both M1- and M3-CHO cells. CS-932 and ACh reduced forskolin-stimulated accumulation of cAMP in M2-CHO cells by 20% and 80%, respectively. This neurochemical profile of CS-932 indicates that the compound can activate M1-receptor-mediated functions selectively. CS-932 increased firing of cholinoceptive neurons in rat hippocampal slices, and this excitation was antagonized by pirenzepine, but not by AF-DX 116. CS-932 increased awake and decreased slow wave sleep episodes of daytime EEG in free-moving rats. It counteracted scopolamine-induced slow waves in rat cortical EEG. CS-932 also increased the power of alpha- and beta-waves, but decreased delta-wave of the cortical EEG in anesthetized monkeys. It ameliorated scopolamine-induced impairment of working memory in rats. Orally administered CS-932 had the best penetration into the brain among the muscarinic agonists tested and caused the least salivary secretion among the cholinomimetics examined. These results indicate that CS-932 has potential as a cognitive enhancer with fewer side effects in therapy for Alzheimer disease.
一种新合成的毒蕈碱型乙酰胆碱(ACh)受体激动剂CS-932,即(R)-3-(3-异恶唑氧基)-1-氮杂双环-[2.2.2]辛烷盐酸盐,与ACh相比,对中国仓鼠卵巢(CHO)细胞中表达的M1受体的亲和力相对高于M2受体。CS-932仅在M1-CHO细胞中升高细胞内Ca2+水平,而ACh在M1-和M3-CHO细胞中均升高该水平。CS-932和ACh分别使M2-CHO细胞中福斯高林刺激的cAMP积累减少20%和80%。CS-932的这种神经化学特征表明该化合物可选择性激活M1受体介导的功能。CS-932增加大鼠海马切片中胆碱能感受神经元的放电,且这种兴奋被哌仑西平拮抗,但不被AF-DX 116拮抗。CS-932增加自由活动大鼠白天脑电图的清醒期并减少慢波睡眠期。它抵消了东莨菪碱诱导的大鼠皮层脑电图慢波。CS-932还增加了麻醉猴皮层脑电图的α波和β波功率,但降低了δ波功率。它改善了东莨菪碱诱导的大鼠工作记忆损害。在所测试的毒蕈碱激动剂中,口服CS-932对脑的穿透性最佳,在所检测的拟胆碱药中引起的唾液分泌最少。这些结果表明CS-932有潜力作为一种认知增强剂,在阿尔茨海默病治疗中副作用较少。