Pudovik, A.N. et al., “Reaction of Partial Esters of Phosphorus Acids with Ethyl Benzoylformate, ” Chemical Abstracts, (1969) Abstract No. 69:87,915u, Zh. Obshch. Khim. (1969) 1968, 38(7), 1539-45 (Russ.). |
Pudovik, A.N. et al., “Reactions of Ethyl Hydrogen Phenylphosphonite with Esters of α-Oxocarboxylic and α-Oxophosphonic Acids,” Chemical Abstracts, (1969) Abstract No. 71:61, 476x, Zh. Obshch. Khim. (1960) 39(5), 1021-7 (Russ.). |
Shindo, N. et al., “O-alkyl (S-alkoxycarbonyl) (phenyl) methyl phenyltiophosphonate,” Chemical Abstracts, (1970) Abstract No. 73:25, 664q, 1970. Japan 70-03772. |
Campbell, D.A., “The Synthesis of Phosphonate Esters, an Extension of the Mitsunobu Reaction,” Journal of Organic Chemistry, (1992) 57:6331-6335. |
Vornov, J. et al., “Toxic NMDA-receptor activation occurs during recovery in a tissue culture model of ischemia,” J. of Neurochemistry, 65, pp. 1681-1691 (1995). |
Slusher, B. et al., “Rat brain N-acetylated α-linked acidic dipeptidase activity,” The J. of Biological Chemistry, Vol. 265, No. 34, pp. 21297-21301, (1990). |
Slusher, B. et al., “Immunocytochemical localization of the N-acetyl-aspartyl-glutamate (NAAG) hydrolyzing enzyme N-acetylated α-linked acidic dipeptidase (NAALADase),” J. of Comp. Neurology, 315, pp. 217-229 (1992). |
Slusher, B. et al., “NAALADase: A Potential Regulator of Synaptic Glutamate,” Biotech Update DuPont NEN, 9, pp. 37-39 (1994). |
Jackson, P. et al., “Design, synthesis, and biological activity of a potent inhibitor of the neuropeptidase N-acetylated α-linked acidic dipeptidase,” J. of Medicinal Chemistry, (1995) 39:2, 619-622. |
Carter, R. et al., “Prostate-specific membrane antigen is a hydrolase with substrate and pharmacologic characteristics of neuropeptidase,” Proc. Nat. Acad. Sci., 93, pp. 749-753 (1996). |
Heston, W.D.W., “Potential Uses of Prostate Specific Membrane Antigen (PSMA) : A Neurocarboxypeptidase and Membrane Folate Hydrolase,” Urologe [A], v. 35, pp. 400-407 (1996). |
Hurn, P., “Gender-Linked Injury After Focal Cerebral Ischemia,” Society for Neuroscience 1996 Abstract Form, (1996). |
Bhardwaj, A. et al., “Striatal nitric oxide (NO) production is enhanced in focal cerebral ischemia: An in vivo microdialysis study,” Soc. For Neuropscience 1996 Abstract Form, (1996). |
Stauch, B. et al., “The effects of N-acetylated alpha linked acidic dipeptidase (NAALADase), inhibitors on[3H]NAAG catabolism in vivo,” Neuroscience Letters, 100, pp. 295-300 (1989). |
Meyerhoff, J. et al., “Activity of a NAAG-hydrolyzing enzyme in brain may affect seizure susceptibility in genetically epilepsy-prone rats,” Molecular Neurobiology of Epilepsy, pp. 163-172 (1992). |
Subasinghe, N. et al., “Synthesis of Acyclic and Dehydroaspartic Acid Analogues of Ac-Asp-Glu-Oh and Their Inhibition of Rat Brain N-acetylated α-linked Acidic Dipeptidase (NAALA Dipeptidase),” J. Med. Chem., 33, pp. 2734-2744, (1990). |
Coyle, J. et al., “N-acetyl-aspartyl glutamate,” Excitatory Amino Acids, pp. 69-77 (1990). |
Tsai, G. et al., “Reductions in acidic amino acids and N-acetylaspartylglutamate in amyotrophic lateral sclerosis,” Brain Research, 556, pp. 151-161 (1991). |
Tsai, G. et al., “Changes of excitatory neurotransmitter metabolism in schizophrenic brains,” Salmon Lecturer of the New York Academy of Medicine, (Dec. 2-3, 1993). |
Rothstein, J. et al., “Abnormal excitatory amino acid metabolism in amyotrophic lateral sclerosis,” Anals of Neurology, vol. 28, pp. 18-25 (1990). |
Tsai, G. et al., “Immunocytochemical distribution of N-acetylaspartylglutamate in the rat forebrain and glutamergic pathways,” J. of Chem. Neuroanatomy, 6, p. 277-292 (1993). |
Koenig, M. et al., “N-acetyl-aspartyl-glutamate (NAAG), elicits rapid increase in intraneuronal Ca2+ in vitro,” NeuroReports, 5, pp. 1063-1068 (1994). |
Carter, R, et al., “Prostate-specific membrane antigen is a hydrolase with substrate and pharmacologic characteristics of neuropeptidase,” Proc. Nat. Acad. Sci., 93, pp. 749-753 (1996). |
Meyerhoff, J. et al., “Genetically epilepsy-prone rats have increased brain regional activity of an enzyme which liberates glutamate from N-acetyl-aspartyl-glutamate,” Brain Research, 593, pp. 140-143 (1992). |
Woods, D. et al., “Gender-linked injury after focal cerebral ischemia,” Soc. For Neuroscience 1996 Abstract Form, (1996). |