Cartmell J, Kemp J A, Alexander S P, Kendall D A
Department of Physiology and Pharmacology, University of Nottingham Medical School, Queen's Medical Centre, U.K.
J Neurochem. 1993 Feb;60(2):780-2. doi: 10.1111/j.1471-4159.1993.tb03218.x.
In rat cerebral cortical slices, the 1-aminocyclopentyl-1S,3R-dicarboxylate (1S,3R-ACPD) isomer of the selective metabotropic excitatory amino acid agonist ACPD inhibited forskolin-stimulated cyclic AMP (cAMP) accumulation in a concentration-dependent manner with a maximal inhibition of 51 +/- 3% and a half-maximally effective concentration of 8.8 +/- 3.4 microM. Similarly, 1R,3S-ACPD inhibited the forskolin response in a concentration-dependent manner, but with an inhibition of 80 +/- 5% at 3 mM. In addition to inhibiting forskolin-stimulated cAMP levels, 1S,3R-ACPD, but not 1R,3S-ACPD, enhanced the cAMP response to A2b adenosine receptor activation. In the presence of 1.2 U/ml of adenosine deaminase (included to reduce the contribution of endogenous adenosine), the efficacy of 1S,3R-ACPD was increased (88 +/- 3% inhibition), but the potency was unchanged. The adenosine receptor antagonist 8-cyclopentyl-1,3-dipropylxanthine also increased the inhibitory effect of 100 microM 1S,3R-ACPD, from 57 +/- 1 to 78 +/- 5%. These results indicate that endogenous adenosine plays an important role in regulating the apparent efficacy of 1S,3R-ACPD inhibition of forskolin-stimulated cAMP accumulation in rat cerebral cortical slices and that previous studies in rat hippocampus and hypothalamus in the absence of added adenosine deaminase may have underestimated the efficacy of this compound.
在大鼠大脑皮质切片中,选择性促代谢型兴奋性氨基酸激动剂ACPD的1-氨基环戊基-1S,3R-二羧酸酯(1S,3R-ACPD)异构体以浓度依赖性方式抑制福司可林刺激的环磷酸腺苷(cAMP)积累,最大抑制率为51±3%,半最大有效浓度为8.8±3.4微摩尔。同样,1R,3S-ACPD也以浓度依赖性方式抑制福司可林反应,但在3毫摩尔时抑制率为80±5%。除了抑制福司可林刺激的cAMP水平外,1S,3R-ACPD而非1R,3S-ACPD增强了对A2b腺苷受体激活的cAMP反应。在存在1.2单位/毫升腺苷脱氨酶(用于减少内源性腺苷的影响)的情况下,1S,3R-ACPD的效力增加(抑制率为88±3%),但效能不变。腺苷受体拮抗剂8-环戊基-1,3-二丙基黄嘌呤也增加了100微摩尔1S,3R-ACPD的抑制作用,从57±1%增加到78±5%。这些结果表明,内源性腺苷在调节1S,3R-ACPD对大鼠大脑皮质切片中福司可林刺激的cAMP积累的明显抑制效能方面起重要作用,并且先前在大鼠海马体和下丘脑在未添加腺苷脱氨酶情况下的研究可能低估了该化合物的效能。