Virginio et al., “Trinitrophenyl-substituted nucleotides are potent antagonists selective for P2X1, P2X3, and heteromeric PX22/3 receptors,” Molecular Pharmacology 53(6):969-973 (1998). |
Abbott et al. “The formalin test: scoring properties fo the first and second phases of the pain response in rats”, Pain 60:91-102 (1995). |
Berge, J. Pharmaceutical Sciences 66:1 et seq. (1977). |
Bianchi et al., “Pharmacological characterization of recombinant human and rat P2X receptor subtypes”, European Journal of Pharmacology 376:127-138 (1999). |
Bland-Ward et al., Acute nociception mediated y hindpay P2X receptor activation in the rat,: Br. J. Pharmacol 122:365-371 (1997). |
Bleehen, “The effects of adenine nucleotides on cutaneous afferent nerve activity”, Br. J. Pharmacol 62:573-577 (1978). |
Boeckmann et al., Chem. Ber. 110:703 (1977). |
Brake et al., “New structural motif for ligand-gated ion channels defined by an ionotopical ATP receptor”, Nature 371:519-523 (1994). |
Cesare et al, Drug Dev. Res. 50:S01-02 (2000). |
Chen et al., “A purinoceptor expressed by a subset of sensory neurons”, Nature 377:428-430 (1995). |
Cockayne et al., Drug Dev. Res. 50:005 (2000). |
Cook et al., “Distinct ATP receptors on pain-sensing and stretch-sensing neurons”, Nature 387:505-508 (1997). |
Ding et al., “Single channel properties of P2X2 purinoceptors,” J. Gen Physiol 113:695-719 (1999). |
Driessen et al., “Modulation of neural noradrealine and ATP release by angiotensin II and prostaglandin E2 in guinea-pig vas deferens”, Naunyn Schmiedebergs Arch Pharmacol 350:618-625 (1994). |
Gu et al., “Activation of ATP P2X receptors elicits glutamate release from sensory neuron synapses”, Nature 389:749-753 (1997). |
Hamilton et al, “The effects of inflammation and inflammatory mediators on nociceptive behavior induced by ATP analogues in the rat,” Br. J. Pharmacol 126:326-332 (1999). |
Holton and Holton, “The capillary dilator substance in dry powders of spinal roots; a possible role of adenosine triphosphate in chemical transmission from nerve endings”, J. Physiol (Lond) 126:124-140 (1954). |
Le et al., “Central P2X4 and P2X6 channel subunits coassemble into a novel heteromeric ATP receptor”, The Journal of Neuroscience 18:7152-7159 (1998). |
Lewis et al, “Coexpression of P2X2 and P2X3 receptor subunits can account for ATP-gated currents in sensory neurons”, Nature 377:432-435 (1995). |
Namasivayam et al., “Purinergic sensory neurotransmission in the urinary bladder: an invitro study in the rat”, Brit J. Urol Int. 84L:854-860 (1999). |
Novakovic et al., “Immunocytochemical localization of P2X3 purinoceptors in sensory neurons in naïve rats and following neuropathic injury,” Pain 80:273-282 (1999). |
Prescott et al., Methods in Cell Biology, Academic Press, New York 14:33 et seq. (1976). |
Ralevic and Burnstock, “Receptors for purines and pyrimidines,” Pharmacol. Rev 50:413-492 (1998). |
Saccomano et al., “Calcium-independent phosphodiesterase inhibitors as putative antidepressants: [3-(bicycloalkyloxy)-4-methoxyphenyl]-2-imidazolidinones”, J. Med. Chem. 34:291-298 (1991). |
Simon et al., “Localization and functional expression of splice variants of the P2X2 receptor”, Molecular Pharmacology 52:237-248 (1997). |
Tanaka et al., “Inhibitors of acyl-coa: cholesterol O-acyltransferase:-3-discovery of a novel series of n-alkyl-n[(fluorophenoxy)benyl]-n-arylureas with weak toxicological effects on adrenal glands”, J. Med. Chem. 41:4408-4420 (1998). |
Thomas et al., “The antagonist trinitrophenyl-ATP reveals co-existence of distinct P2X receptor channels in rat nodose neurons”, J. Physiol (Lond) 509(Pt. 2):411-417 (1998). |
Torres et al., “Co-expression of P2X1 and P2X5 receptor subunits reveals a novel ATP-gated ion chennel”, Molecular Pharmacology 54:989-993 (1998). |
Tsuda et al., “In vivo pathway of thermal hyperalgesia by intrathecal administration of—methylene ATP in mouse spinal cord: involvement of the glutamate-NMDA receptor system,” Br. J. Pharamcol 127:449-456 (1999). |
Virginio et al., “Calcium permeability and block at homomeric and hetermeric P2X2 and P23 receptors, and P2X receptors in rat nodose neurons”, Journal of Physiology (Lond) 510(1):27-35 (1998). |
Vulchanova et al., “Immunohistochemical study of the P2X2 and P2X3 receptor subunits in rat and monkey sensory neurons and their central terminals”, Neuropharmacology 36(9):1229-1242 (1997). |
Vulchanova et al., “Differential distribution of two ATP-gated ion channels (P2xreceptors) determined by immunocytochemistry”, Proc Natl Acad Sci USA 93:8063-8067 (1996). |