Kang et al., Misaengmul Hakhoechi (1991), 29(6) pp. 353-360.* |
Cha et al., Bull. Korean Chem. Soc. (1994), 15(11) pp. 1001-1003.* |
Li, N. et al., “Structure-activity Studies of the Inhibition of Serine.Beta-Lactamases by Phosphonate Monoester” Bioorg. Med. Chem.; 1997; vol. 5 (9); pp 1783-1788. |
Laird R.M. et al., “Mechanism of Acyl Phosphonate Reactions. I. Kinetics of the Solvolyses of Benzoyl and p-Toluoyl Phenylphosphonates in Aqueous Dioxane” J. Chem. Soc., Perkin Trans. 2 (JCPKBH); 1973 (10); pp 1434-1436. |
Kazlauskas R.J. et al., “Synthesis of Methoxycarbonyl Phosphate, New Reagent Having High Phosphoryl Donor Potential for Use in ATP Cofactor Regeneration” J. Org. Chem; 1985; vol. 50 (7); pp 1069-1076. |
Li, Naixin, “Inhibition of Serine β-Lactamases by Acyl Phosphonates: a New Source of Inert Acyl and Phosphyl Enzymes” J. of the American Chemical Society; vol. 120, No. 18; May 1998; pp 4264-4268. |
Pratt, R.F., “Salicyloyl Cyclic Phosphate, a Penicillin-Like Inhibitor of β-Lactamases” J. of the American Chemical Society, vol. 120, No. 13, Apr. 1998; pp 3004-3006. |
Song, Y. et al., “Benzylpenicillin Methyl Phosphate. A Penicillin Prodrug That Inactivates RTEM.beta-Lactamase” Bioorg. Med. Chem. Lette.; 1994; vol. 4 (10) pp 1225-1228. |
Rahil, J. et al. “Phosphonate Monoester inhibitors of Class A.Beta-Lactamases” Biochem; 1991; vol. 275 (3) pp 793-795. |