(1991. január 1.) „Role of intracellular-free calcium in the cornified envelope formation of keratinocytes: differences in the mode of action of extracellular calcium and 1,25 dihydroxyvitamin D3”. Journal of Cellular Physiology146 (1), 94–100. o. DOI:10.1002/jcp.1041460113. PMID1990023.
(1997) „Cloning of Human 25-Hydroxyvitamin D-1 -Hydroxylase and Mutations Causing Vitamin D-Dependent Rickets Type 1”. Molecular Endocrinology11 (13), 1961–70. o. DOI:10.1210/me.11.13.1961. PMID9415400.
(2011) „The role of cathepsin E in terminal differentiation of keratinocytes”. Biological Chemistry392 (6), 571–85. o. DOI:10.1515/BC.2011.060. PMID21521076.
(2011) „TALE homeodomain proteins regulate site-specific terminal differentiation, LCE genes and epidermal barrier”. Journal of Cell Science124 (10), 1681–1690. o. DOI:10.1242/jcs.077552. PMID21511732. PMC3183491.
(1975) „Serial cultivation of strains of human epidermal keratinocytes: The formation of keratinizing colonies from single cells”. Cell6 (3), 331–43. o. DOI:10.1016/S0092-8674(75)80001-8. PMID1052771.
(2006) „P63 regulates proliferation and differentiation of developmentally mature keratinocytes”. Genes & Development20 (22), 3185–97. o. DOI:10.1101/gad.1463206. PMID17114587. PMC1635152.
(1977) „Epidermal growth factor and the multiplication of cultured human epidermal keratinocytes”. Nature265 (5593), 421–4. o. DOI:10.1038/265421a0. PMID299924.
(1987) „Cell migration is essential for sustained growth of keratinocyte colonies: The roles of transforming growth factor-alpha and epidermal growth factor”. Cell50 (7), 1131–7. o. DOI:10.1016/0092-8674(87)90179-6. PMID3497724.
(1991. január 1.) „Role of intracellular-free calcium in the cornified envelope formation of keratinocytes: differences in the mode of action of extracellular calcium and 1,25 dihydroxyvitamin D3”. Journal of Cellular Physiology146 (1), 94–100. o. DOI:10.1002/jcp.1041460113. PMID1990023.
(1997) „Cloning of Human 25-Hydroxyvitamin D-1 -Hydroxylase and Mutations Causing Vitamin D-Dependent Rickets Type 1”. Molecular Endocrinology11 (13), 1961–70. o. DOI:10.1210/me.11.13.1961. PMID9415400.
(2011) „The role of cathepsin E in terminal differentiation of keratinocytes”. Biological Chemistry392 (6), 571–85. o. DOI:10.1515/BC.2011.060. PMID21521076.
(2011) „TALE homeodomain proteins regulate site-specific terminal differentiation, LCE genes and epidermal barrier”. Journal of Cell Science124 (10), 1681–1690. o. DOI:10.1242/jcs.077552. PMID21511732. PMC3183491.
(1975) „Serial cultivation of strains of human epidermal keratinocytes: The formation of keratinizing colonies from single cells”. Cell6 (3), 331–43. o. DOI:10.1016/S0092-8674(75)80001-8. PMID1052771.
(2006) „P63 regulates proliferation and differentiation of developmentally mature keratinocytes”. Genes & Development20 (22), 3185–97. o. DOI:10.1101/gad.1463206. PMID17114587. PMC1635152.
(1977) „Epidermal growth factor and the multiplication of cultured human epidermal keratinocytes”. Nature265 (5593), 421–4. o. DOI:10.1038/265421a0. PMID299924.
(1987) „Cell migration is essential for sustained growth of keratinocyte colonies: The roles of transforming growth factor-alpha and epidermal growth factor”. Cell50 (7), 1131–7. o. DOI:10.1016/0092-8674(87)90179-6. PMID3497724.