참고문헌
-
Bruns, R. F., Fergus, J. H., Badger, E. W., Bristol, J. A., Santay, L. A., Hartman, J. D., Hays, S. J. and Huang, C. C. (1987). Binding of the A
$_1$ -selective adenosine antagonist 8-cyclopentyl1,3- diproxylxanthine to rat brain membranes. Naunyn-Schrniedebergs Arch. Pharmacol. 335, 59-63 -
Choca, J. I., Proudfit, H. K. and Green, R. D. (1987). Identification of A
$_1$ and A$_2$ adenosine receptors in the rat spinal cord. J. Pharmacol. Exp. Ther. 242, 905-910 - Coney, A. M. and Marshall, J. M. (1998). Role of adenosine and its receptors in the vasodilatation induced in the cerebral cortex of the rat by systemic hypoxia. J. Physiol. 509, 507-518 https://doi.org/10.1111/j.1469-7793.1998.507bn.x
- Dimagl, D., Lindauer, U. and Villringer, A. (1993). Role of nitric oxide in the coupling of cerebral blood flow to neuronal activation in rats. Neurosci. Lett. 149, 43-46 https://doi.org/10.1016/0304-3940(93)90343-J
- Edvinsson, L. and Fredholm, B. B. (1983). Charaterization of adenosine receptors in isolated cerebral arteries of cat. Br. J. Pharmacol. 80, 631-637
- Feoktistov, I. and Biaggioni, I. (1997). Adenosine AlB receptors. Pharmacol. Rev. 49, 381-402
- Fiebich, B. L., Biber, K., Gyufko, K., Berger, M., Bauer, J. and Van-Calker, D. (1996). Adenosine Alb receptors mediate an increase in interleukin(IL)-mRNA and IL-6 protein synthesis in human astroglioma cells. J. Neurochem. 66, 1426-1431 https://doi.org/10.1046/j.1471-4159.1996.66041426.x
- Fredholm, B. B., Abbrachio, M. P., Bumstock, G., Daly, J. w., Harden, T. K., Jacobson, K. A., Leff, P. and Williams, M. (1994). Nomenclature and classification of purinoceptors. Pharmacol. Rev. 46, 143-156
- Garthwaite, J., Charles S. L. and Chess-Williams R. (1988). Endothelium-derived relaxing factor release on activation of NMDA receptors suggests role as intercellular messenger in the brain. Nature 336, 385-388 https://doi.org/10.1038/336385a0
-
Gerber, D. and Gahwiler, B. H. (1994). GABA
$_B$ and adenosine receptors mediate enhancement of the K$^+$ current, I$_A_H_P$ , by reducing adenylate cyclase activity in rat CA3 hippocampal neurons. J. Neurophysiol. 72, 2360-2367 - Hong, K. W., Pyo, K. M., Lee, W. S., Yu, S. S and Rhim, B. Y. (1994). Pharmacological evidence that calcitonin-related peptide is implicated in cerebral autoregulation, Am. J. Heart. eirc. Physiol. 266, H11-H16
- Hong, K. W., Shin, H. K., Kim, H. H., Choi, J. M., Rhim, B. Y. and Lee W. S. (1999). Metabolism of exogenous cAMP to adenosine and its role for vasodilation during cerebral autoregulation in rat pial artery. Am. J. Heart. Circ. Physiol. 276, H376-H382
- Hong, K. W., Yoo, S. E., Yu, S. S., Lee, J. Y. and Rhim, B. Y. (1996). Pharmacological coupling and functional role for CGRP receptors in the vasodilation of rat pial arterioles, Am. J, Heart. Cire. Physiol. 270, H317-H323
- Hyman, A. L., Kadowitz, P. J, and Lippton, H. L. (1989). Methylene blue selectively inhibits pulmonary vasodilator responses in cats. J. Appl. Physiol. 66, 1513-1517
- Jiang, H., Colbran, J. L., Francis, S. H, and Corbin, J. D. (1992). Direct evidence for cross-activation of cGMP-dependent protein kinase by cAMP in pig coronary arteries. J, BioI, Chem, 267,1015-1019.
-
Liang, B. T. and Haltiwanger, B. (1995). Adenosine A
$_2_a$ and A$_2_b$ receptors in cultured fetal chick heart cells. High-and lowaffinity coupling to stimulation of myocyte contractility and cAMP accumulation. Circ. Res. 76, 242-251 https://doi.org/10.1161/01.RES.76.2.242 -
Martin, P. L. (1992). Relative agonist potencies of C2-substituted analogs of adenosine: evidence for adenosine A
$_2_B$ receptors in the guinea pig aorta, Eur. J, Pharmacol. 216, 235-242 -
Martin, P. L. and Potts, A. A. (1994). The endothelium of the rat renal artery plays an obligatory role in A
$_2$ adenosine receptormediated relaxation induced by 5'-N-ethylcarboxamidoadenosine and N$^6$ -cyclopentyladenosine. J. Pharmacal. Exp. Ther. 270, 893-899 - Mian, R. and Marshall, J, M. (1991). The role of adenosine in dilator responses induced in arterioles and venules of rat skeletal muscle by systemic hypoxia. J. Physiol. 443, 499-511
- Ngai, A. C. and Winn, H. R. (1993). Effects of adenosine and its analogues on isolated arterioles: extraluminal and intraluminal application. cire. Res. 73, 448-457 https://doi.org/10.1161/01.RES.73.3.448
- Olah, M. E. and Stiles, G. L. (1996). Adenosine receptor subtypes: characterization and therapeutic regulation. Annu. Rev. Pharmacol. Toxicol. 35, 581-606
-
Shin, H., K., Shin, Y., W. and Hong, K., W. (2000). Role of adenosine A
$_2_B$ receptors in vasodilation of rat pial artery and cerebral blood flow autoregulation. Am. J. Physiol.-Heart and Circulatory Physiology 278, H339-H344 - Skinner, M, R. and Marshall, J. M. (1996), Studies on the roles of ATP, adenosine and nitric oxide in mediating muscle vasodilation induced in the rat by acute systemic hypoxia. J. Physiol. 495, 553-560
-
Stehle, J. H., Rivkees, S. A., Lee, J. J., Weaver, D. R., Deeds, J. D. and Reppert, S. M. (1992). Molecular cloning and expression of the cDNA for a novel A
$_2$ -adenosine receptor subtype. Mol. Endocrinol. 6, 384-393 -
Stone, G. A., Jarvis, M. F., Sills, M. S., Weeks, B., Snowhill, E. W. and Williams, M. (1988). Species differences in high affinity adenosine A
#_2$ binding sites in striatal membranes from mammalian brain. Drug Develop. Res. 15, 31-46 https://doi.org/10.1002/ddr.430150104 -
Strohmeier, G. R., Reppert, S. M., Lencer, W. I. and Madara, J. L. (1995). The A
$A_{2b}$ adenosine receptor mediates camp responses to adenosine receptor agonists in human intestinal epithelia. J. BioI. Chem, 270, 2387-2941 https://doi.org/10.1074/jbc.270.5.2387 - Thomas, T. and Marshall, J. M. (1994). Interdependence of respiratoryand cardiovascular changes induced by systemic hypoxia in the rat: the role of adenosine. J. Physiol. 480, 627-636
- Van Calker, D., Muller, M. and Hamprecht, B. (1979). Adenosine regulates via two different types of receptors, the accumulation of cyclic AMP in cultured brain cells. J. Neurochem. 33, 999-1005 https://doi.org/10.1111/j.1471-4159.1979.tb05236.x
- Van Wylen, D. G. L., Park, T. S., Rubio, R. and Berne, R. M. (1989). The effect of local infusion of adenosine and adenosine analogues on local cerebral blood flow. J. Cereb. Blood. Flow. Metab. 9, 556-562 https://doi.org/10.1038/jcbfm.1989.79
-
Webb, R. L., Sills, M. A., Chovan, J. P., Balwierczak, J. L. and Francis. J. E. (1992). CGS21680: a potent selective adenosine A
$_2$ receptor agonist. Cardiovasc. Drug Rev. 10. 26-53.1 https://doi.org/10.1111/j.1527-3466.1992.tb00235.x - Winn, H. R., Rubio, R. and Berne, R. M. (1981). The role of adenosine in the regulation of cerebral blood flow. J. Cereb. Blood. Flow. Metab. 1, 239-244 https://doi.org/10.1038/jcbfm.1981.29
- Wysham, D. G., Brotherton, A. F. and Heistad, D. D. (1986). Effects of forskolin on cerebral blood flow : Implications for a role of adenylate cyclase. Stroke 17, 1299-1303 https://doi.org/10.1161/01.STR.17.6.1299
- Zhou, H. L. and Torphy, T. J. (1991). Relationship between cyclic guanosine monophosphate accumulation and relaxation of canine trachealis induced by nitrovasodilators. J. Pharmacol. Exp. Ther. 258, 972-978