Atwal, K.S. et al., “Dihydropyrimidine Calcium Channel Blockers. 3. 3-Carbamoyl-4-aryl-1,2,3,4-tetrahydro-6-methyl-pyrimidenecarboxylic Acid Esters as Orally Effective Antihypertensive Agents,” Journal of Medicinal Chemistry, (1991) 34(2): 76-81. |
Cho H., Takeuchi Y., Ueda M., and Mizuno A., Regioselective synthesis of N-substituted dihydropyrimidine-2 (1-H) or (3H)—One., Tetrahedron Letters, (1988) vol. 29(42): 5405-5408. |
Atwal, K.S. et al., “Synthesis of Substituted 1,2,3,4- Tetrahydro-6-Methyl-2-Thioxo-5-Pyrimidinecarboxylic Acid Esters,” Heterocycles (1987) 26(5): 1189-1192 (Exhibit 39). |
Atwal, K.S. et al., “Substituted 1,4-Dihydropyrimidines. 3. Synthesis of Selectively Functionalized 2-Hetero-1,4-dihydropyimidines,” Journal of Organic Chemistry (1989) 54: 5898-5907 (Exhibit 40). |
Atwal, K.S. et al., “Dihydropyrimidine Calcium Channel Blockers: 2-Heterosubstituted 4-aryl-1,4-dihydro-6-methyl-5-pyrimidinecarboxylic Acid Esters as Potent Mimics of Dihydropyridines,” Journal of Medicinal Chemistry (1990) 33(5): 1510-1515 (Exhibit 41). |
Atwal, K.S. et al., “Dihydropyrimidine Calcium Channel Blockers. 2. 3-Substituted-4-aryl-1,4-dihydro-6-methyl-5-pyrimidinecarbosylic Acid Esters as Potent Mimics of Dihydropyridines,” Journal of Medicinal Chemistry (1990) 33(9): 2629-2635 (Exhibit 42). |
Atwal, K.S. et al., “Dihydropyrimidine Calcium Channel Blockers. 3. 3-Carbamoyl-4-aryl-1,2,3,4-tetrahydro-6-methyl-5-pyrimidenecarboxylic Acid Esters as Orally Effective Antihypertensive Agents,” Journal of Medicinal Chemistry (1991) 34(2): 806-811 (Exhibit 43). |
Barrio, et al., “A Direct Method For Preparation of 2-Hydroxyethoymethyl Derivatives of Guanine, Adenine, and Cytosine,” Journal of Medicinal Chemistry (1980) 23(5): 572-574 (Exhibit 44). |
Brown, et al., “Inhibitors of Bacillus subtilis DNA Polymerase III. 6-(Arylalkylamino)uracils and 6-Anilinouracils,” Journal of Medicinal Chemistry (1977) 20(9): 1186-1189 (Exhibit 46). |
Cho, H. et al., “Dihydropyrimidines: Novel Calcium Antagonists with Potent and Long-Lasting Vasodilative and Antihypertensive Activity,” Jorunal of Medicinal Chemistry (1989) 32: 2399-2406 (Exhibit 47). |
Khanina, E.L. et al., Alkylation of derivatives of 2-oxo-4-phenyl-6-methyl-1,2,3,4-tetrahydropyrimidine-5-carboxlic acid. Chemical Abstracts 89: 43319 (1978) (Exhibit 50). |
Mamaev, V.P. amd Dubovenko, Z.D., Phyrimidines. XXI. 5-Substituted 2-hydroxy-4,6-diphenylpyrimidines. Chemical Abstracts 73: 77187 (1970) (Exhibit 51). |
Rovnyak, G.C. et al., “Dihydropyrimidine Calcium Channel Blockers. 4. Basic 3-Substituted-4-aryl-1,4-dihydropyrimidine-5-carboxylic Acid Esters,” Journal of Medicinal Chemistry (1992) 35(17): 3254-3263 (Exhibit 53). |
Wetzel, J.M., et al., “Discovery of α1a-Adrenergic Receptor Antagonists Based on the L-Type Ca2+ Channel Antagonist Niguldipine” Journal of Medicinal Chemistry (1995) 38(10): 1579-1581 (Exhibit 56). |