ROLES OF VEHICLES FOR SKIN TREATMENT 203 (35) M. Denda, J. Sato, et al., Low humidity stimulates epidermal DNA synthesis and amplifies the hyperproliferative response to barrier disruption: Implication for seasonal exacerbations of inflam­ matory dermatoses,]. Invest. Dermatol., 111, 8 7 3-888 (1998). (36) J. Sato, C. Katagiri, et al., Drastic decrease in environmental humidity decreases water-holding capacity and free amino acid content of the stratum corneum, Arch. Dermatol. Res., 293, 477--480 (2001). (37) J. Sato, M. Denda, et al., Abrupt decreases in environmental humidity induce abnormalities in permeability barrier homeostasis,]. Invest. Dermatol., 119, 900-904 (2002). (38) M. Fartasch, E. Schnetz, et al., Characterization of detergent-induced barrier alterations-Effect of barrier cream on irritation,]. Invest. Dermatol. Symp. Proc., 3, 121-127 (1998). (39) P. Thune, Evaluation of the hydration and the water-holding capacity in atopic skin and so-called dry skin, Acta Derm. Venereal. Suppl., 144, 133-135 (2000). (40) M. Loden, H. Olsson, et al., Friction, capacitance and transepidermal water loss (TEWL) in dry atopic and normal skin, Br.]. Dermatol., 126, 137-141 (1992). (41) E. Berardesca, D. Fideli, et al., In vivo hydration and water-retention capacity of stratum corneum in clinically uninvolved skin in atopic and psoriatic patients, Acta Derm. Venereal., 70, 400--404 (1990). (42) A. Di Nardo, P. Wertz, et al., Ceramide and cholesterol composition of the skin of patients with atopic dermatitis, Acta Derm. Venereal., 78, 27-30 (1998). (43) W. Gehring, M. Gloor, et al., Predictive washing test for evaluation of individual eczema risk, Contact Dermatitis, 39, 8-13 (1998). (44) A. M. Grunewald, M. Gloor, et al., Barrier recompensation mechanisms, Curr. Prob!. Dermatol., 25, 206-213 (1996). (45) G. Imokawa, A. Abe, et al., Decreased level of ceramides in stratum corneum of atopic dermatitis: An etiologic factor in atopic dry skin?]. Invest. Dermatol., 96, 523-526 (1991). (46) J. Hara, K. Higuchi, et al., High-expression of sphingomyelin deacylase is an important determinant of ceramide deficiency leading to barrier disruption in atopic dermatitis,]. Invest. Dermatol., 115, 406--413 (2000). (47) K. Higuchi, J. Hara, et al., The skin of atopic dermatitis patients contains a novel enzyme, gluco­ sylceramide sphingomyelin deacylase, which cleaves the N-acyl linkage of sphingomyelin and glu­ cosylceramide, Biochem. ]., 350, 747-756 (2000). (48) H. Wirth, M. Gloor, et al., Sebaceous glands in uninvolved skin of patients suffering from atopic dermatitis, Arch. Dermatol. Res., 270, 167-169 (1981). (49) M. Fartasch and T. L. Diepgen, The barrier function in atopic dry skin: Disturbance of membrane­ coating granule exocytosis and formation of epidermal lipids? Acta Derm. Venereal., l 76(Suppl.), 26-31 (1992). (50) T. Ogawa, K. Katsuoka, et al., Comparative study of staphylococcal flora on the skin surface of atopic dermatitis patients and healthy subjects,]. Dermatol., 21, 453--460 (1994). (51) D. Abeck and M. Mempel, Staphylococcus aureus colonization in atopic dermatitis and its therapeutic implications, Br.]. Dermatol., 139(Suppl. 53), 13-16 (1998). (52) D. L. Breneman, J.M. Hanifin, et al., The effect of antibacterial soap with 1.5% triclocarban on Staphylococcus aureus in patients with atopic dermatitis, Cutis, 66, 296-300 (2000). (53) J. W. Fluhr, M. Gloor, et al., Glycerol accelerates recovery of barrier function in vivo, Acta Derm. Venereal., 79, 418--421 (1999). (54) M. Loden, A. C. Andersson, et al., Improvement in skin barrier function in patients with atopic dermatitis after treatment with a moisturizing cram (Canoderm), Br. ]. Dermatol., 140, 264-267 (1999). (55) M. Q. Man, K. R. Feingold, et al., Exogenous lipids influence permeability barrier recovery in acetone-treated murine skin, Arch. Dermatol., 129, 728-738 (1993). (56) M. Mao-Qiang, B. E. Brown, et al., Exogenous nonphysiologic vs physiologic lipids: Divergent mechanisms for correction of permeability barrier dysfunction, Arch. Dermatol., 131, 809-816 (1995). (57) M. M. Man, K. R. Feingold, et al., Optimization of physiological lipid mixtures for barrier repair,]. Invest. Dermatol., 106, 1096-1101 (1996). (58) W. Gehring, T. Forssman, et al., Die keimreduzierende Wirkung von Erythromycin und Triclosan bei atopischer Dermatitis, Akt. Dermatol., 22, 28-31 (1996). (59) K. Sugimoto, H. Kuroki, et al., New successful treatment with disinfectant for atopic dermatitis, Dermatology, 195(Suppl. 2), 62-68 (1997).
204 JOURNAL OF COSMETIC SCIENCE (60) W. Gehring, R. Bopp, et al., Effect of topically applied evening primrose oil on epidermal bar­ rier function in atopic dermatitis as a function of vehicle, Arzneimittelforschung, 49, 635-642 (1999). (61) T. Agner, An experimental study of irritant effects of urea in different vehicles, Acta Derm. Venereal. l 77(Suppl.), 44-46 (1992). (62) F. Pasche-Koo, P.A. Piletta, et al., High sensitization rate to emulsifiers in patients with chronic leg ulcers, Contact Dermatitis, 31, 226--228 (1994). (63) S. 0. Funk and H. I. Maibach, Propylene glycol dermatitis: Re-evaluation of an old problem, Contact Dermatitis, 31, 236-241 (1994). (64) A. M. Kligman, "The Myth of Lanolin Allergy: Lanolin Is Not a Contact Sensitizer, in The Lanolin Book (Beierdsorf, Hamburg, 1999), pp. 161-175. (65) E. W. Clark, E. Cronin, et al., Lanolin with reduced sensitizing potential: A preliminary report, Contact Dermatitis, 3, 69-73 (1977). (66) E.W. Clark, "The History and Evolution of Lanolin," in The Lanolin Book (Beiersdorf, Hamburg, 1999), pp. 15-50. (67) E.W. Clark, Estimation of general incidence of specific lanolin allergy, J. Soc. Cosmet. Chem., 26, 323-335 (1975). (68) L. K. Dotterud and E. S. Falk, Contact allergy in relation to hand eczema and atopic diseases in north Norwegian schoolchildren, Acta Paediatr., 84, 402-406 (1995). (69) F. Giordano-Labadie, F. Rance, et al., Frequency of contact allergy in children with atopic dermatitis: Results of a prospective study of 137 cases, Contact Dermatitis, 40, 192-195 (1999). (70) A. Kligman, Regression method for assessing the efficacy of moisturizers, Cosmet. Toiletr., 93, 27 (1978). (71) J. Moss, The effect of three moisturisers on skin surface hydration, Skin Res. Technol., 2, 32 (1996). (72) E. N. Petersen, The hydrating effect of a cream and white petrolatum measured by optothermal infrared spectrometry in vivo, Acta Derm. Venereal., 71, 3 73-3 76 (1991). (73) E.W. Clark, Short-term penetration of lanolin into human stratum corneum,j. Soc. Cosmet. Chem., 43, 219 (1992). (74) P. Elias, M. Mao-Quiang, et al., "The Epidermal Permeability Barrier: Effects of Physiologic and Non-Physiologic Lipids," in The Lanolin Book (Beiersdorf, Hamburg, 1999), pp. 253-278. (75) G. Sauermann and V. Schreiner, "The Skin Caring Effect of Topical Products Containing Lanolin Alcohols," in The Lanolin Book (Beiersdorf, Hamburg, 1999), pp. 217-235. (76) D.S. Morrison, "Petrolatum," in Dry Skin and Moisturizers, M. Loden and H. I. Maibach, Eds. (CRC Press, Boca Raton, FL, 2000), pp. 251-257. (77) L. Rigano and P. Muukkonen, Problem solving emollients: High-tech hydrogenated polydecenes in diseased skin treatment. 20th Worldcongress of Dermatology, Paris, 2002 (2002). (78) M. Foldvari, Effect of vehicle on topical liposomal drug delivery: Petrolatum bases,]. Microencapsul., 13, 589-600 (1996). (79) A. P. Lazar and P. Lazar, Dry skin, water, and lubrication, Dermatol. Clin., 9, 45-51 (1991). (80) K. I. O'Goshi, N. Tabata, et al., Comparative study of the efficacy of various moisturizers on the skin of the ASR miniature swine, Skin Pharmacol. Appl. Skin Physiol., 13, 120-127 (2000). (81) M. Loden and M. Lindberg, The influence of a single application of different moisturizers on the skin capacitance, Acta Denn. Venereal., 71, 79-82 (1991). (82) G. Pellacani, B. Belletti, et al., Evaluation of the short-term effects of skin care products: A com­ parison between capacitance values and echographic parameters of epidermal hydration, Curr. Prob!. Dermatol., 26, 177-182 (1998). (83) R. Ghadially, L. Halkier-Sorensen, et al., Effects of petrolatum on stratum corneum structure and function, J. Am. Acad. Dermatol., 26, 387-396 (1992). (84) S. M. Schleicher, H.J. Milstein, et al., Response of hand dermatitis to a new skin barrier-protectant cream, Cutis., 61, 233-234 (1998). (85) A. J. Nopper, K. A. Horii, et al., Topical ointment therapy benefits premature infants, J. Pediatr., 128, 660-669 (1996). (86) R. Zimmermann, "(The rabbit ear model as comedogenic test. 3. Histologic and enzyme histochem­ ical studies of the follicle and sebaceous gland epithelium], Dermatol. Monatsschr., 176, 55-61 (1990). (87) J.E. Fulton, Jr., S. R. Pay, et al., Comedogenicity of current therapeutic products, cosmetics, and ingredients in the rabbit ear,]. Am. Acad Dermatol., 10, 96-105 (1984).
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