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Laboratory Animals|July 1, 1987
Induction of ornithine decarboxylase activity in hairless rat epidermis as a pharmacological model: validation of the animal modelM Bouclier, A Jomard, N Kail, et al.Differentiation; Research in Biological Diversity|May 1, 1991
The respecification of limb pattern by new synthetic retinoids and their interaction with cellular retinoic acid-binding proteinM Maden, D Summerbell, J Maignan, et al.Acta Dermato-Venereologica|June 1, 1993
Expression of stratum corneum chymotryptic enzyme in reconstructed human epidermis and its suppression by retinoic acidT Egelrud, M Régnier, B Sondell, et al.Skin Pharmacology and Physiology|May 30, 2008
Claudin 2 mRNA and protein are present in human keratinocytes and may be regulated by all-trans-retinoic acidD Telgenhoff, S Ramsay, S Hilz, et al.Pharmaceutical Research|December 1, 1993
Site-specific drug delivery to pilosebaceous structures using polymeric microspheresA Rolland, N Wagner, A Chatelus, et al.Biochemical and Biophysical Research Communications|October 28, 1994
Fatty acids and retinoids act synergistically on adipose cell differentiationI Safonova, U Reichert, B Shroot, et al.The British Journal of Dermatology|July 1, 1983
Relative potencies of several non-steroidal anti-inflammatory drugs against soya bean 15-lipoxygenaseP Verrando, B Shroot, J P Ortonne, et al.International Orthopaedics|January 1, 1985
[Lamellar rotation osteotomy of the tibia in children]M Dutoit, J C CaronThe Biochemical Journal|June 1, 1990
Retinol and retinal metabolism. Relationship to the state of differentiation of cultured human keratinocytesG Siegenthaler, J H Saurat, M PonecThe Journal of Investigative Dermatology|April 14, 1999
Reconstruction of a human skin equivalent using a spontaneously transformed keratinocyte cell line (HaCaT)E Boelsma, M C Verhoeven, M PonecPageof 27