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Adams, J. C. and Watt, F. M (1988). An unusual strain of human keratinocytes which do not stratify or undergo terminal differentiation in culture. J. Cell Biol 107, 1927-1938.[Abstract/Free Full Text]

Allen-Hoffmann, B. L. and Rheinwald, J. G (1984). Polycyclic aromatic hydrocarbon mutagenesis of human epidermal keratinocytes in culture. Proc. Nat. Acad. Sci. USA 81, 7802-7806.[Abstract/Free Full Text]

Bartek, J., Vojtesek, B., Staskova, Z., Bartkova, J., Kerekes, Z., Rejthat, A. and Kovarik, J (1991). A series of 14 new monoclonal antibodies to keratins: characterization and value in diagnostic histopathology. J. Pathol 164, 215-224.[Medline]

Bell, C. L. and Quinton, P. M (1991). Effects of media buffer systems on growth and electrophysiologic characteristics of cultured sweat duct cells. In Vitro Cell Dev. Biol 27, 47-54.[Medline]

Caselitz, J., Walther, B., Wustrow, J., Seifert, G., Weber, K. and Osborn, M (1986). A monoclonal antibody that detects myoepithelial cells in exocrine glands, basal cells in other epithelia and basal and suprabasal cells in certain hyperplastic tissues. Virchows Arch A Pathol. Anat. Histopathol 409, 725-738.[Medline]

Cepek, K. L., Shaw, S. K., Parker, C. M., Russell, G. J., Morrow, J. S., Rimm, D. L. and Brenner, M. B (1994). Adhesion between epithelial cells and T lymphocytes mediated by E-cadherin and theE 7integrin. Nature 372, 190-193.[Medline]

Cohn, B. A (1994). In search of human skin pheromones. Arch Dermatol 130, 1048-1051.[Abstract]

Collie, G., Buchwald, M., Harper, P. and Riordan, J. R (1985). Culture of sweat gland epithelial cells from normal individuals and patients with cystic fibrosis. In Vitro Cell Dev Biol 21, 597-602.[Medline]

Connell, N. D. and Rheinwald, J. G (1983). Regulation of the cytoskeletonin mesothelial cells: reversible loss of keratin and increase in vimentin during rapid growth in culture. Cell 34, 245-253.[Medline]

Debus, E., Weber, K. and Osborn, M (1982). Monoclonal cytokeratin antibodies that distinguish simple from stratified squamous epithelia: Characterisation on human tissues. EMBO J 1, 1641-1647.[Medline]

Fischer, H. P., Altmannsberger, M., Weber, K. and Osborn, M (1987). Keratin polypeptides in malignant epithelial liver tumors. Differential diagnostic and histogenic aspects. Am. J. Pathol 127, 530-537.[Abstract]

Franke, W., Schmid, E., Reudenstein, C., Appelhans, B., Osborn, M., Weber, K. and Keenan, T. W (1980). Intermediate-sized filaments of prekeratin type in myoepithelial cells. J. Cell Biol 84, 633-654.[Abstract/Free Full Text]

Franke, W. W., Schiller, D. L., Hatzfield, M. and Winter, S (1983). Protein complexes of intermediate-sized filaments: melting of cytokeratin complexes in urea reveals different polypeptide separation characteristics. Proc. Nat. Acad. Sci. USA 80, 7113-7117.[Abstract/Free Full Text]

Gomm, J. J., Browne, P. J., Coope, R. C., Liu, Q. Y., Buluwela, L. and Coombes, R. C (1995). Isolation of pure populations of epithelial and myoepithelial cells from the normal human mammary gland using immunomagnetic separation with dynabeads. Anal. Biochem 226, 91-99.[Medline]

Jones, C. J., Bell, C. L. and Quinton, P. M (1988). Different physiological signatures of sweat gland secretory and duct cells in culture. Am. J. Physiol 255, 102-.

Karsten, U., Papsdorf, G., Roloff, G., Stolley, P., Abel, H., Walther, I. and Weiss, H (1985). Monoclonal anti-cytokeratin antibody from a hybridoma clone generated by electrofusion. Eur. J. Cancer Clin. Oncol 21, 733-740.[Medline]

LaRocca, P. J. and Rheinwald, J. G (1984). Coexpression of simple epithelial keratins and vimentin by human mesothelium and mesothelioma in vivo and in culture. Cancer Res 44, 2991-2999.[Abstract/Free Full Text]

Lee, C. M., Carpenter, F., Coaker, T. and Kealey, T (1986). The primary culture of epithelia from the secretory coil and collecting duct of normal human and cystic fibrotic eccrine sweat glands. J. Cell Sci 83, 103-118.[Abstract]

Lemullois, M., Rossignol, B. and Mauduit, P (1996). Immunolocalization of myoepithelial cells in isolated acini of rat exorbital lacrimal gland: cellular distribution of muscarinic receptors. Biol. Cell 86, 175-181.[Medline]

Lynch, M. H., O'Guin, W. M., Hardy, C., Mak, L. and Sun, T.-T (1986). Acidic and basic hair/nail (\324hard') keratins: their co-localization in upper cortical and cuticle cells of the human hair follicle and their relationship to \324soft' keratins. J. Cell Biol 181, 2593-2606.

Martin, P (1997). Wound healing\320aiming for perfect skin regeneration. Science 276, 75-81.[Abstract/Free Full Text]

Moll, I. and Moll, R (1992). Changes of expression of intermediate filament proteins during ontogenesis of eccrine sweat glands. J. Invest. Dermatol 98, 777-785.[Medline]

Moll, R., Franke, W. W. and Schiller, D. L (1982). The catalog of human cytokeratins: Patterns of expression in normal epithelia, tumors and cultured cells. Cell 31, 11-24.[Medline]

Moll, R., Krepler, R. and Franke, W. W (1983). Complex cytokeratin polypeptide patterns observed in certain human carcinomas. Differentiation 23, 256-269.[Medline]

Morimoto, Y. and Saga, K (1995). Proliferating cells in human eccrine and apocrine sweat glands. J. Histochem. Cytochem 43, 1217-1221.[Abstract]

Norberg, L., Dardick, I., Leung, R., Burford-Mason, A. and Rippstein, P (1992). Immunogold localization of actin and cytokeratin filaments in myoepithelium of human parotid salivary gland. Ultrastruct Pathol 16, 555-568.[Medline]

O'Hare, M. J., Ormerod, M. G., Monaghan, P., Lane, E. B. and Gusterson, B. A (1991). Characterization in vitro of luminal and myoepithelial cells isolated from the human mammary gland by cell sorting. Differentiation 46, 209-221.[Medline]

Osborn, M., Debus, E. and Weber, K (1984). Monoclonal antibodies specific for vimentin. Eur. J. Cell Biol 34, 137-143.[Medline]

Parenteau, N. L., Nolte, C. M., Bilbo, P., Rosenberg, M., Wilkins, L. M., Johnson, E. W., Watson, S., Mason, V. S. and Bell, E (1991). Epidermis generated in vitro: Practical considerations and applications. J. Cell. Biochem 45, 245-251.[Medline]

Pedersen, P. S (1989). Human sweat duct cells in primary culture. Basic bioelectric properties of cultures derived from normals and patients with cystic fibrosis. In Vitro Cell Dev. Biol 25, 342-352.[Medline]

Peterson, O. W. and van Deurs, B (1988). Growth factor control of myoepithelial-cell differentiation in cultures of human mammary gland. Differentiation 39, 197-215.[Medline]

Pirisi, L., Yasumoto, S., Feller, M., Doniger, J. and DiPaolo, J. A (1987). Transformation of human fibroblasts and keratinocytes with human papillomavirus type 16 DNA. J. Virol 61, 1061-1066.[Abstract/Free Full Text]

Ramaekers, F., Huysmans, A., Moesker, O., Kant, A., Jap, P., Herman, C. and Vooijs, P (1983). Monoclonal antibody to keratin filaments, specific for glandular epithelia and their tumors. Lab. Invest 49, 353-361.[Medline]

Rheinwald, J. G. and Green, H (1975). Serial cultivation of strains of human epidermal keratinocytes: The formation of keratinizing colonies from single cells. Cell 6, 331-344.[Medline]

Rheinwald, J. G. and Beckett, M. A (1980). Defective terminal differentiation in culture as a consistent and selectable character of malignant human keratinocytes. Cell 22, 629-632.[Medline]

Rheinwald, J. G. and O'Connell, T. M (1985). Intermediate filament proteins as distinguishing markers of cell type and differentiated state in cultured human urinary tract epithelia. Ann.NY Acad. Sci 455, 259-267.[Medline]

Rollins, B. J., O'Connell, T. M., Bennett, G., Burton, L. E., Stiles, C. D. and Rheinwald, J. G (1989). Environment-dependent growth inhibition of human epidermal keratinocytes by recombinant human transforming growth factor-. J. Cell. Physiol 139, 455-462.[Medline]

Saga, K. and Takahashi, M (1992). Immunoelectron microscopic localization of epidermal growth factor in eccrine and apocrine sweat glands. J. Histochem. Cytochem 40, 241-249.[Abstract]

Sato, K., Nishiyama, A. and Kobayashi, M (1979). Mechanical properties and functions of the myoepithelium in the eccrine sweat gland. Am. J. Physiol 237, 177-.

Sch\232n, M. and Rheinwald, J. G (1996). A limited role for retinoic acid and retinoic acid receptors RARand RAR in regulating keratin 19 expression and keratinization in oral and epidermal keratinocytes. J. Invest. Dermatol 107, 428-438.[Medline]

Skalli, O., Ropraz, P., Treciak, A., Benzonana, G., Gillessen, D. and Gabbiani, G (1986). A monoclonal antibody against-smooth muscle actin: a new probe for smooth muscle differentiation. J. Cell Biol 103, 2787-2796.[Abstract/Free Full Text]

Southgate, J., Williams, H. K., Trejdosiewicz, L. K. and Hodges, G. M (1987). Primary culture of human oral epithelial cells. Growth requirements and expression of differentiated characteristics. Lab. Invest 56, 211-223.[Medline]

T\232lle, H.-G., Weber, K. and Osborn, M (1985). Microinjection of monoclonal antibodies specific for one intermediate filament protein in cells containing multiple keratins allow insight into the composition of particular 10 nm filaments. Eur. J. Cell Biol 38, 234-244.[Medline]

Troyanovsky, S. M., Guelstein, V. I., Tchipysheva, T. A., Krutovskikh, V. A. and Bannikov, G. A (1989). Patterns of expression of keratin 17 in human epithelia: dependency on cell position. J. Cell Sci 93, 419-426.[Abstract/Free Full Text]

van Niekerk, C. C., Jap, P. H., Ramaekers, F. C., van de Molengraft, F. and Poels, L. G (1991). Immunohistochemical demonstration of keratin 7 in routinely fixed paraffin-embedded human tissues. J. Pathol 165, 145-152.[Medline]

Wu, Y.-J., Parker, L. M., Binder, N. E., Beckett, M. A., Sinard, J. H., Griffith, C. T. and Rheinwald, J. G (1982). The mesothelial keratins: A new family of cytoskeletal proteins identified in cultured mesothelial cells and nonkeratinizing epithelia. Cell 31, 693-703.[Medline]

Yokozeki, H., Saga, K., Sato, F. and Sato, K (1990). Am. J. Physiol 258, Page: R , -.




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