218 JOURNAL OF THE SOCIETY OF COSMETIC CHEMISTS (99) (ioo) (lOl) (102) 103) 104) 105) 106) lO7) 108) 109) (110) (111) (112) (113) (114) (115) (116) (117) (118) (119) (120) (121) (122) (123) (124) P. A. Johnson and J. R. Quayle, Microbial growth on Ci compounds. 6. Oxidation of methanol, formaldehyde, and formate by methanol-grown Pseudomonas AM 1, Blochem. J., 92, 281 (1964). T. Nash and A. Hirch, The revival of formaldehyde-treated bacteria, J. Appl. Chem., 4, 458-463 (1954). J. J. O'Neill and C. A. Mead, The parabens: Bacterial adaptation and preservative capacity, J. Soc. Cosmet. Chem., 33, 75-84 (1982). J. S. Chapman, M. A. Diehi, and R. C. Lyman, Biocide susceptibility and intracellular glutathione in Escherichia coli, J. Indus. Microbiol., 12, 403-407 (1993). S. Singer, The use of preservative neutralizers in diluents and plating media, Cosmet. Toilerr., 102, 55-60 (1987). S. V. W. Sutton, T. Wrzosek, and D. W. Proud, Neutralization efficacy of Dey-Engley medium in testing of contact lens disinfecting solutions, J. Appl. Bacteriol., 70, 351-354 (1991). D. W. Proud and S. V. W. Sutton, Development of a universal diluting fluid for membrane filtration sterility testing, Appl. Environ. Microbiol., 58, 1035-1038 (1992). S. V. W. Sutton, The evaluation of biocide neutralization in the determination of microbiocidal efficacy of contact lens solutions, Intl. Contact Lens Clinics, 19, 167-173 (1992). A.D. Russell, "Neutralization Procedures in the Evaluation of Bactericidal Activity," in Disinj•c- rants: Their Use and Evaluation of Effectiveness, C. H. Collins, M. C. Allwood, S. F. Bloomfield, and A. Fox, Eds. (Academic Press, London, 1981), pp. 45-59. B. P. Dey and E. B. Engley, Jr., Methodology for recovery of chemically treated Staphylococcus aureus with neutralizing medium, Appl. Environ. Microbiol., 45, 1533-1537 (1983). F. B. Engley and B. P. Dey, "A Universal Neutralizing Medium for Antimicrobial Chemicals," in Proceedings of the 56th Mid-Year Meeting of the Chemical Specialties Manufacturers Association (Chemical Manufacturers Association, New York, 1970), pp. 100-106. R. M. Atlas, Handbook of Microbiological Media, L. C. Parks, Ed. (CRC Press, Boca Raton, Florida, 1993), pp. 283-284. Difco Manual.' Dehydrated Culture Media and Reagents for Microbiology, 10th ed. (DIFCO Laboratories, Detroit, 1984), pp. 261-263. S. V. W. Sutton, "Neutralizer Evaluations as Control Experiments for Antimicrobial Efficacy Tests," in Handbook of Disinfectants and Antiseptics (Marcel-Dekker, New York, 1995) pp. 43-62. American Society for Testing Materials, "Standard Practices for Evaluating Inactivators of Antimi- crobial Agents Used in Disinfectants, Sanitizers, Antiseptics or Personal Products," in ASTM Man- ual (ASTM, 1991), E 1054-E 1091. D. S. Orth, Linear regression method for rapid determination of cosmetic preservative efficacy, J. Soc. Cosmet. Chem., 30, 321-332 (1979). S. V. W. Sutton, R.J. Franco, M. F. Mowrey-McKee, S. C. Busschaert, J. Hamberger, and D. W. Proud, D-value determinations are an inappropriate measure of disinfecting activity of common contact lens disinfecting solutions, Appl. Environ. Microbiol., 57, 2021-2026 (1991). F. J. Turner, "Hydrogen Peroxide and Other Oxidant Disinfectants," in Disinjection, Sterilization, and Preservation, 3rd ed., S.S. Block, Ed. (Lea & Febiger, Philadelphia, 1983), pp. 240-250. R. T. Toledo, F. E. Escher, and J. C. Ayers, Sporicidal properties of hydrogen peroxide against food spoilage organisms, Appl. Microbiol., 26, 592-597 (1973). M. Barnes and G. W. Denton, Capacity tests for the evaluation of preservatives in formulations, Soap Perf. Cosmet., 42, 729-733 (1969). A. J. Cunningham, Understanding Immunology (Academic Press, New York, 1978), pp. 28, 237. H. B. Kostenbauder, "Physical Factors Influencing the Activity of Antimicrobial Agents," in Dis- infection, Sterilization, and Preservation, 3rd ed., S.S. Block, Ed. (Lea & Febiger, Philadelphia, 1983), pp. 811-828. T. Eklund, Inhibition of growth and uptake processes in bacteria by some chemical food preserva- tives, J. Appl. Bacteriol., 48, 423-432 (1980). T. Eklund, The effect of sorbic acid and esters of p-hydroxybenzoic acid on the protonmotive force in Escherichia coli membrane vesicles, J. Gen. Microbiol., 131, 73-76 (1985). E. Freese, C. W. Sheu, and E. Galliers, Function of lipophilic acids as antimicrobial food additives, Nature, 24, 321-325 (1973). W. Martoadiprawito and J. R. Whitaker, Potassium sorbate inhibition of yeast alcohol dehydroge- nase, Biochim. Biophys. Acta, 77, 536-544 (1963).
COSMETIC PRESERVATION 219 (125) (126) (127) (128) (129) (130) (131) (132) (133) (134) (135) (136) (137) (138) (139) (140) (141) (142) (143) (144) (145) (146) (147) (148) (149) J. A. Troller, Catalase inhibition as a possible mechanism of the fungistatic action of sorbic acid, Can. J. Microbiol., 11, 611-617 (1965). P. F. Prindle, "Phenolic Compounds," in Disinjection, Sterilization, and Preservation, 3rd ed., S.S. Block, Ed. (Lea and Febiger, Philadelphia, 1983), pp. 197-224. W. B. Hugo, Membrane-active antimicrobial compounds--A reappraisal of their mode of action in light of the chemiosmotic theory, Int. J. Pharm., 1, 127-131 (1978). W. B. Hugo, "Mode of Action of Non-Antibiotic Antibacterial Agents," in Pharmaceutical Micro- biology, 3rd ed., W. B. Hugo and A.D. Russell, Eds. (Blackwell and Scientific Publishers, London, 1983), pp. 258-264. A. H. Fogg and R. M. Lodge, The mode of antibacterial action of phenols in relation to drug- fastness, Trans. Faraday Soc., 41, 359-365 (1945). E. M. Richardson and E. E. Reid, Alpha, gamma-di-p-hydroxyphenyl-alkanes, J. Am. Chem. Soc., 62, 413-415 (1940). S. Silver and L. Wendt, Mechanism of action of phenethyl alcohol: Breakdown of the cellular permeability barrier, J. Bacteriol., 93, 560 (1976). P. Gilbert, E.G. Beveridge, and B. P. Crone, The lethal action of 2-phenoxyethanol and its analogues upon Escherichia coli NCTC 5933, Microbios., 19, 125-141 (1977). A. B. Law, J. N. Moss, and E. S. Lashen, "Kathon CG, a New Single-Component, Broad Spectrum Preservative System for Cosmetics and Toiletries," in Cosmetic and Drug Preservation.' Principles and Practice, J. J. Kabara, Ed. (Marcel Dekker, New York, 1984), pp. 129-141. P. J. Collier, A. Ramsey, P. Austin, and P. Gilbert, Growth inhibitory and biocidal activity of some isothiazolone biocides, J. Appl. Bacteriol., 69, 569-577 (1990). S. J. Fuller, The mode of action of 1,2-benzisothiazolin-3-one on Staphylococcus aureus, Lett. Appl. Microbiol., 1, 13 (1985). P. J. Collier, A. Ramsey, R. D. Waigh, K. T. Douglas, P. Austin, and P. Gilbert, Chemical reactivity of some isothiazolone biocides, J. Appl. Bacteriol., 69, 578 (1990). L. Grossman, S. S. Levine, and W. S. Allison, The reaction of formaldehyde with nucleotides and T2 bacteriophage DNA, J. Molec. Bid., 3, 41-60 (1961). J. A. Shepherd, M. R. Buerby, D. Pemberton, P. Gilbert, and R. D. Waigh, The reactions of Bronopol (2-bromo-2-nitropropane-l,3-diol) with thiols, J. Pharm. Pharmacol., 39(Suppl.), 116P (1987). T. Zsolnai, Versuche zur entdeckung neuer fungistatika. II. Nitroverbindungen. Biochem. Pharma- col., 5, 287-304 (1961). B. Croshaw, M. J. Groves, and M. J. Lessel, Some properties ofBronopol, a new antimicrobial agent active against Pseudomonas aeruginosa, J. Pharm. Pharmacol. Suppl., 16, 127T-130T (1964). B. Croshaw and V. R. Holland, "Chemical Preservatives--Use of Bronopol © as a Cosmetic Preser- vative," in Cosmetic and Drug Preservation.' Principles and Practice, J. J. Kabara, Ed. (Marcel Dekker, New York, 1984), pp. 31-62. M. Ghannoum, M. Thompson, W. Bowman, and S. A1-Khalil, Mode of action of the antimicrobial compound 5-bromo-5-nitro- 1,3-dioxane (Bronidox), Folia Microbial., 31, 19 (1986). R. J. Stretton and T. W. Manson, Some aspects of the mode of action of the antibacterial compound Bronopol (2-bromo-2-nitropropane- 1,3-diol), J. Appl. Bacteriol., 36, 61-76 (1973). R. Naito, T. Itoh, H. Hasegawa, H. Arimura, Y. Fujita, K. Hasegawa, T. Inaba, Y. Kagitani, S. Komeda, T. Matsumoto, H. Okamoto, K. Okano, Y. Oguro, and T. Ogushi, Bronopol as a substitute for thimersal, Dev. Biol. Stand., 24, 39-48 (1974). M. R. W. Brown and R. M. E. Richards, Effect of ethylenediamine tetraacetate on the resistance of Pseudomonas aeruginosa to antibacterial agents, Nature, 207, 1391-1393 (1965). K. H. WallNiusser, "Antimicrobial Preservatives Used by the Cosmetic Industry," in Cosmetic and Drug Preservation.' Principles and Practice, J. J. Kabara, Ed. (Marcel Dekker, New York, 1984), pp. 605-745. Anon., Frequency of preservative use in cosmetic formulations as disclosed to FDA-1990, Cosmet. Toiletr., 105, 45-47 (1990). J. J. Kabara, Ed., Cosmetic and Drug Preservation.' Principles and Practice (Marcel Dekker, New York, 1984). M. S. Parker, "Preservation of Pharmaceutical and Cosmetic Products," in Principles and Practice of Disinjection, Preservation and Sterilization, 2nd ed., A.D. Russell, W. B. Hugo, and G. A. Ayliffe, Eds. (Blackwell Scientific Publications, London, 1992), pp. 335-350.
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