Patent Abstracts of Japan, vol. 11, No. 297 (C-448)(2744) Sep. 25, 1987 (JPA62089608; Apr. 24, 1987). |
Bolognia et al., Hairless Pigmented Guinea Pigs: A New Model for the Study of Mammalian Pigmentation, Pigment Cell Research, vol. 3, pp. 150-156 (1990). |
Eistert et al., “Versuche mit 2.6-Dimethoxy-und 2.3.5.6-Tetrahalogenbenzoquinonen”, Annalen Der Chemie, vol. 735, pp. 145-157 (1970). |
Friedrich et al., “Syntheses and Reactions of 3-Phenyloxete and the Parent Unsubstituted Oxete”, J. Org. Chem., vol. 46, pp. 306-311 (1981). |
Giovani et al., “Reagents for 2-Tetrahydrothienyl and 2-Tetrahydrothiopyranyl Cations”, Gazzetta Chimica Italiana, vol. 123, pp. 257-260 (1993). |
Hanaya et al., “A Convenient Synthesis of 1,2,4-Tri-O-acetyl-5-[(R)-and (S)-ethylphosphino and phenylphosphino]-3-O-methyl-α,β-D-xylopyranoses and their Phosphinothioyl Derivatives”, Bull. Chem. Soc. Jpn., vol. 63, pp. 421-427 (1990). |
Hanessian, S., “Reductive Rearrangement of 5-Azido-5-deoxy-Pentoses A New Synthesis of Sugars Containing Nitrogen in the Ring”, Chemistry and Industry, pp. 1296-1297 (1965). |
Hanessian, S., “Synthesis of Hydroxypiperidines from Carbohydrate Precursors”, Chemistry and Industry, pp. 2126-2127 (1966). |
Heathcock et al., “Total Synthesis of (±)-Vallesamidine”, J. Org. Chem., vol. 55, pp. 798-811 (1990). |
Imokawa et al., “Differential Analysis of Experimental Hypermelanosis Induced by UVB, PUVA, Allergic Contact Dermatitis Using a Brownish Guinea Pig Model”, Arch. Dermatol. Res., vol. 278, pp. 352-362 (1986). |
Inokawa et al, “Sugars Containing a Carbon-Phosphorus Bond. Part V. 5-deoxy-5-(ethylphosphinyl)-D-ribopyranose”, Carbohydrate Research, vol. 30, pp. 127-132 (1973). |
Inoue, Y. et al., “Photochemistry of 3-oxacycloalkenes”, J. Org. Chem., vol. 46, pp. 2267-2272 (1981). |
Iqbal et al., “Cobalt (II) Chloride Catalysed Addition of Alchols on Vinyl Ethers: A Convenient Synthesis of Mixed Acetals”, Syn. Comm., vol. 19, pp. 901-906 (1989). |
Ito et al., “Depigmentation of Black Guinea Pig Skin by Topical Application of Cysteaminylphenol, Cysteinylphenol, and Related Compounds”, J. Invest. Derm., vol. 88, pp. 77-82 (1987). |
Jara et al., “Assays for Mammalian Tyrosinase: A Comparative Study”, Pigment Cell Research, vol. 1, pp. 332-339 (1988). |
Kasting et al., “Prodrugs for Dermal Delivery: Solubility, Molecular Size, and Functional Group Effects”, in: K. L. Sloan (Ed.), Prodrugs: Topical and Ocular Drug Delivery, Marcel Dekker Inc., New York, pp. 117-161, (1992). |
Lam et al. “The Syntheses of Phenolic Antioxidants. 1,3,5-Tris(4-Hydroxyphenoxy-methyl)mesitylene and Related Compounds”, Organic Preparations and Procedures Int., 14(4), pp. 241-247 (1982). |
Lam et al. “The Syntheses of Phenolic Antioxidants. 3,5-Bis(3,5-Di-Tert-Butyl-4-Hydroxybenzyl)-2,3,6-Trimethylbenzyl Derivatives”, Organic Preparations and Procedures Int., 14(5), pp. 309-317 (1982). |
Ludwig et al., “Synthesis of beta-(4-hydroxy-2-methylphenoxy)-lactic acid, a Metabolite of Mephenesin”, J. of the Amer. Chem. Soc., vol. 77, pp. 5751-5753 (1955). |
March, J., Advanced Organic Chemistry (4th Ed.) Wiley InterScience Publications, pp. 764 (1992). |
March, J., Advanced Organic Chemistry (4th Ed.) Chpt. 19, Wiley InterScience Publications, pp. 1201-1202 (1992). |
Nerdel, F., “Darstellung Von 4,5,6,7-Tetrahydrooxepin Und 5,6,7,8-Tetrahydro-4H-oxocin”, Tetrahedron Letters, vol. 44, pp. 5385-5391 (1966). |
Nudelman et al., “Skin-depigmenting Prodrugs of Hydroquinone”, Eur J Med Chem, vol. 28, pp. 159-164, (1993). |
Oakes et al., “Allylic vs. Vinylic Deprotonation Reactions of Cyclic Vinyl Ethers. 7-Lithio-2,3,4,5-tetrahydrooxepin: Synthesis and Carbon-13 Nuclear Magnetic Resonance Spectrum”, J. Org. Chem, vol. 47, pp. 3094-3097 (1982). |
Paquette, L. A., “Oxocane. Synthesis and Conformational Isomerization”, J. Org. Chem., vol. 32, pp. 2723-2725 (1967). |
Sandler et al., (Eds.) Design of Enzyme Inhibitors as Drugs Oxford University Press, Oxford (1989). |
Scheeren et al., “Thermally Catalyzed and Noncatalyzed [2+2] Cycloadditions Between Ketene Acetals and Carbonyl Compounds. A Simple Route to 2,2-Dialkoxyoxetanes”, J. Org. Chem., vol. 42, pp. 3128-3132 (1977). |
Segel, I.H., “Simple Inhibition Systems”, Chpt 3., pp. 100-160, Enzyme Kinetics. John Wiley & Sons, New York (1975). |
Shono et al., “Electroorganic Chemistry. 81. Anodic Oxidation of Sulfonamides and Amidophosphates”, J. Org. Chem., vol. 49, pp. 3711-3716 (1984). |
Shono et al., “A New Method for Regioselective Synthesis of 2-Substituted 1-(Methoxycarbonyl)-1,2-Dihydropyridines”, Tetrahedron Letters, vol. 28, pp. 4073-4074 (1987). |
Shiraishi et al., “Quinones. Part 3.”, J. of Chem. Soc., Perkin Transactions 1., Letchworth GB, pp 1591-1599 (1983). |
Sobti, A. Tetrahedron Letters, vol. 35, #22-24 (1994). |
Winder et al., “New Assays for Tyrosine Hydroxylase and DOPA Oxidase Activities on Tyrosinase”, Eur. J. Biochem., vol. 198, No. 2, pp. 317-326 (1991). |
York J.L., “4.5 Inhibition of Enzymes”, Enzymes: Classification, Kinetics, and Control in Textbook of Biochemistry with Clinical Correlations (T.M. Devlin, Ed.) John Wiley & Sons, New York, pp. 165-166, (1982). |