Dixon et al. J. Biol. Med., 41, pp. 62-68, 1967.* |
The Staphylococci in Human Disease, Chapter 26, pp. 583-595; Henry F. Chambers, “Parenteral Antibiotics for the Treatment of Bacteremia and Other Serious Staphylococal Infections”. |
Diagn Microbiol Infect. Dis., 1993; 17:265-270, Polak, et al., “In Vitro Activity of Recombinant Lysostaphin-Antibiotic Combinations Toward Methicillin-Resistant Staphylococcus aureus”. |
The Staphylococci in Human Disease, Chapter 6 (part 2), pp. 158-174, Brigitte Berger-Bachi, Resistance Not Mediated By B-Lactamase (Methicillin Resistance). |
FEMS Microbiology Letters, 153 (1997) 261-264, Tschierske, et al., “Lif, the Lysostaphin Immunity Factor, Complements FemB in Staphylococcal Peptidoglycan Interpeptide Bridge Formation”. |
Applied and Environmental Microbiology, Apr. 1995, pp. 1475-1479, DeHart, et al., “The Lystostaphin Endopeptidase Resistance Gene (epr) Specifies Modification of Peptidoglycan Cross Bridges in STaphylococcus simulans and Staphylococcus aureus”. |
Journal of Bacteriology, Jan. 1997, pp. 9-16, Stranden, et al., “Cell Wall Monoglycine Cross-Bridges and Methicillin Hypersusceptibility in a femAB Null Mutant of Methicillin-Resistant Staphylococcus aureaus”. |
Canadian Journal of Microbiology, vol. 13 (1967), pp. 845-853, Zygmunt, et al., “Lytic Action of Lysostaphin on Susceptible and Resistant Strains of Staphylococcus aureus”. |
Journal of Bacteriology, Dec. 1997, pp. 7573-7576, vol. 179, No. 23, Ehlert, et al., “Specificities of FemA and Fem B for Different Glycine Residues: FemB Cannot Substitute for FemA in STaphylococcal Peptidoglycan Pentaglycine Side Chain Formation”. |
Lystostaphin-Methicillin Therapy, vol. 41, Aug. 1968, pp. 62-68, Goodman, et al., “Lysostaphin: An Anzymatic Approach to Staphylococcal Disease”. |
Yale Journal of, Biology and Medicine vol. 39, Feb. 1967, pp. 230-244, Schaffner, et al., “Lysostaphin: An Enzymatic Approach to Staphylococcal Disease”. |
Yale Journal of Biology and Medicine, vol. 39, Feb. 1967, Schaffner, et al., “Lysostaphin: An Enzymatic Approach to Staphylococcal Disease”. |
Kessler, et al., “Secreted LasA of Pseudomonas aeruginosa Is A Staphylolytic Protease”, The Journal of Biological Chemistry, vol. 268, No. 10, pp. 7503-7508 (1993). |
Li, et al., “Purification, Staphylolytic Activity, and Cleavage Sites of α-Lytic Protease from Achromobacter lyticus”, The Journal of Biological Chemistry, vol. 122, No. 4, pp. 772-778 (1997). |
Oldham, et al., “Lysostaphin: Use of a Recombinant Bactericidal Enzyme as a Mastitis Therapeutic”, J. Diary of Sci., 74:4175-4182 (1991). |
Martin, et al., “The Selective Activity of Lysotaphin in vivo”, The Journal of Laboratory and Clinical Medicine, vol. 70, No. 1, pp. 1-8 (Jul. 1967). |
Martin, et al., “The Reacquisition of Staphylococci by Treated Carriers: A Demonstration of Bacterial Interference”, J. Lab. Clin. Med., vol. 71, No. 5, pp. 791-797 (May 1968). |
Harrison et al., “Therapeutic Activity of Lysostaphin in Experimental Staphylococcal Infections”, Canadian Journal of Microbiology, vol. 13, pp. 93-97 (1967). |
Schuhardt, et al., “Lysostaphin Therapy in Mice Infected with Staphylococcus aureus”, J. Bacteriol., vol. 88, No. 1064, pp. 815-816. |
Harrison, et al., “Lysostaphin in Experimental Renal Infections”, Journal of Bacteriology, pp. 520-524, (Feb. 1967). |
Stark, et al., “Systemic Lysostaphin Man—Apparent Antimicrobial Activity in A Neutropenic Patient”, The New England Journal of Medicine, pp. 239-240 (Aug. 1974). |
Goldberg et al., “Studies in Experimental Staphylococcal Endocarditis in Dogs. VI. Treatment in Lysostaphin”, Antimicrobial Agents and Chemotherapy, pp. 45-53 (1967). |
Quickel Jr. et al, “Efficacy and Safety of Topical Lysostaphin Treatment of Persistent Nasal Carriage of Staphylococcus aureus”, Applied Microbiology, pp. 446-450 (Sep. 1971). |