| 1. |
Jones, R. T., Hudson, E. A., and Resau, J. H. (1981) A review of in vitro and in vivo culture techniques for the study of pancreatic carcinogenesis. Cancer
47, 1490–1496.
<Occurrence Type="DOI"><Handle>10.1002/1097-0142(19810315)47:6+<1490::AID-CNCR2820471409>3.0.CO;2-5</Handle></Occurrence>
|
| |
| 2. |
Githens, S., Holmquist, D. R., Whelan, J. F., and Ruby, J. R. (1981) Morphologic and biochemical characteristics of isolated
and cultured pancreatic ducts. Cancer
47, 1505–1512.
<Occurrence Type="DOI"><Handle>10.1002/1097-0142(19810315)47:6+<1505::AID-CNCR2820471411>3.0.CO;2-J</Handle></Occurrence>
|
| |
| 3. |
Githens, S. and Whelan, J. F. (1983) Isolation and culture of hamster pancreatic ducts. J. Tissue Cult. Methods
8, 97–103.
|
| |
| 4. |
Richards, J., Pasco, D., Yang, J., Guzman, R., and Nandi, S. (1983) Comparison of the growth of normal and neoplastic mouse
mammary cells on plastic, on collagen gels and in collagen gels. Exp. Cell Res.
146, 1–14.
<Occurrence Type="DOI"><Handle>10.1016/0014-4827(83)90319-1</Handle></Occurrence>
|
| |
| 5. |
Hootman, S. R. and Logsdon, C. D. (1998) Isolation and monolayer culture of guinea pig pancreatic duct epithelial cells. In Vitro
24, 566–574.
|
| |
| 6. |
Lefebvre, V. H., Otonkoski, T., Ustinov, J., Huotari, M. A., Pipeleers, D. G, and Bouwens, L. (1998) Culture of adult human
islet preparations with hepatocyte growth factor and 804G matrix is mitogenic for duct cells but not for beta cells. Diabetes
47, 134–137.
|
| |
| 7. |
Langhofer, M., Hopkinson, S. B., and Jones, J. C. R. (1993) The matrix secreted by 804G cells contains laminin-related components
that participate in hemidesmosome assembly in vitro. J. Cell Sci.
105, 753–764.
|
| |
| 8. |
Parsa, I., Marsh, W. H., and Sutton, A. L. (1980) An in vitro model of pancreas carcinogenesis. Am. J. Pathol.
98, 649–662.
|
| |
| 9. |
Parsa, I., Marsh, W. H., Sutton, A. L., and Butt, K. M. H. (1981) Effects of dimethylnitrosamine on organ-cultured adult human
pancreas. Am. J. Pathol.
102, 403–411.
|
| |
| 10. |
Resau, J. H., Cottrell, J. R., Elligett, K. A., and Hudson, E. A. (1987) Cell injury and regeneration of human epithelium
in organ culture. Cell Biol. Toxicol.
3, 441–458.
|
| |
| 11. |
Harris, A. and Coleman, L. (1988) Cultured epithelial cells derived from foetal pancreas as a model for the study of cystic
fibrosis: Further analysis on the origins and nature of the cell types. J. Cell Sci.
90, 73–77.
|
| |
| 12. |
Harris, A., Chalkley, G., Goodman, S., and Coleman, L. (1991) Expression of the cystic fibrosis gene in human development.
Development
113, 305–310.
|
| |
| 13. |
Githens, S., Patke, C. L., and Schexnayder, J. A. (1994) Isolation and culture of rhesus monkey pancreatic ductules ductule-like
epithelium. Pancreas
9, 20–31.
|
| |
| 14. |
Verme, T. B. and Hootman, S. R. (1990) Regulation of pancreatic duct epithelial growth in vitro. Am. J. Physiol.
258, G833–G840.
|
| |
| 15. |
Vila, M. R., Lloreta, J., Schussler, M. H., Berrozpe, G, Welt, S., and Real, F. X. (1995) New pancreas cancers cell lines
that represent distinct stages of ductal differentiation. Lab. Invest.
72, 395–404.
|
| |
| 16. |
Chambers, J. A. and Harris, A. (1993) Expression of the cystic fibrosis gene and the major pancreatic mucin gene, MUC1, in
human ductal epithelial cells. J. Cell Sci.
105, 417–422.
|
| |
| 17. |
Kolar, C, Caffrey, T., Hollingsworth, M., et al. (1997) Duct epithelial cells cultured from human pancreas processed for transplantation
retain differentiated ductal characteristics. Pancreas
15, 265–271.
|
| |
| 18. |
Kerr-Conte, J., Pattou, F., Lecomte-Houcke, M., et al. (1996) Ductal cyst formation in collagen-embedded adult human islet
preparations. A means to the reproduction of nesidioblastosis in vitro. Diabetes
45, 1108–1114.
|
| |
| 19. |
Trautmann, B., Schlitt, H.-J., Hahn, E. G, and Lohr, M. (1993) Isolation, culture, and characterization of human pancreatic
duct cells. Pancreas
8, 248–254.
|
| |
| 20. |
Ryu, B., Jones, J., Hollingsworth, M. A., Hruban, R. H., and Kern, S. E. (2001) Invasion-specific genes in malignancy: Serial
analysis of gene expression comparisons of primary and passaged cancers. Cancer Res.
61, 1833–1838.
|
| |
| 21. |
Harris, A. and Coleman, L. (1987) Establishment of a tissue culture system for epithelial cells derived from human pancreas:
A model for the study of cystic fibrosis. J. Cell Sci.
87, 695–703.
|
| |
| 22. |
Singer, K. H., Scearce, R. M., Tuck, D. T., Whichard, L. P., Denning, S. M., and Haynes, B. F. (1989) Removal of fibroblasts
form human epithelial cell cultures with use of a complement fixing monoclonal antibody reactive with human fibroblasts and
monocytes/macrophages. J. Invest. Dermatol.
92, 166–170.
|
| |
| 23. |
Harris, C. C, Autrup, H., Stoner, G, et al. (1977) Metabolism of benzo(a)pyrene and 7,12-dimethylbenz(a)anthracene in cultured
human bronchus and pancreatic duct. Cancer Res.
37, 3349–3355.
|
| |
| 24. |
Jones, R. T., Barrett, L. A., van Haaften, C, Harris, C. C, and Trump, B. F. (1977) Carcinogenesis in the pancreas. I. Long-term
explant culture of human and bovine pancreatic ducts. J. Natl. Cancer Inst.
58, 557–565.
|
| |
| 25. |
Lawson, T. and Kolar, C. (1994) Mutagenicity of heterocyclic amines when activated by pancreas tissue. Mutation Res.
325, 125–128.
<Occurrence Type="DOI"><Handle>10.1016/0165-7992(94)90074-4</Handle></Occurrence>
|
| |
| 26. |
Hyde, K, Harrison, D., Hollingsworth, M. A., and Harris, A. (1999) Chloride-bicarbonate exchangers in human fetal pancreas.
Biochem. Biophys. Res. Commun.
263, 315–321.
|
| |
| 27. |
de Lisle, R. C. and Logsdon, C. D. (1990) Pancreatic acinar cells in culture: Expression of acinar and ductal antigens in
a growth-related manner. Eur. J. Cell Biol.
51, 64–75.
|
| |
| 28. |
Hall, P. A. and Lemoine, N. R. (1993) Rapid acinar to ductal transdifferentiation in cultured human exocrine pancreas. J. Pathol.
166, 97–103.
|
| |
| 29. |
Vilá, M. R., Lloreta, J., and Real, F. X. (1994) Normal human pancreas cultures display functional ductal characteristics.
Lab. Invest.
71, 423–431.
|
| |
| 30. |
Yuan, S., Rosenberg, L., Paraskevas, S., Agapitos, D., and Duguid, W. P. (1996) Transdifferentiation of human islets to pancreatic
ductal cells in collagen matrix culture. Differentiation
61, 67–75.
|
| |
| 31. |
Paddenberg, R., Flocke, K., Elsasser, H. P., Lesch, G., Heidtmann, H. H., and Mannherz, H. G. (1998) Phenotypical changes
of a human pancreatic adenocarcinoma cell line after selection on laminin-1/nidogen (LM/Ng) substratum. Eur. J. Cell Biol.
76, 51–64.
|
| |
| 32. |
Bonner-Weir, S., Taneja, M., Weir, G C, et al. (2000) In vitro cultivation of human islets from expanded ductal tissue. Proc. Natl. Acad. Sci. USA
97, 7999–8004.
|
| |
| 33. |
Gmyr, V., Kerr-Conte, J., Vanderwalle, B., Proye, C, Lefebvre, J., and Pattou, F. (2001) Human pancreatic ductal cells: Large
scale isolation and expansion. Cell Transplant.
10, 109–121.
|
| |
| 34. |
Gmyr, V., Kerr-Conte, J., Belaich, S., et al. (2000) Adult human cytokeratin 19-positive cells reexpress insulin promoter
factor 1 in vitro: Further evidence for pluripotent pancreatic stem cells in humans. Diabetes
49, 1671–1680.
|
| |
| 35. |
Ramiya, V. K., Maraist, M., Arfors, K. E., Schatz, D. A., Peck, S. B., and Cornelius, J. G (2000) Reversal of insulin-dependent
diabetes using islets generated in vitro from pancreatic stem cells. Nat. Med.
6, 278–282.
|
| |
| 36. |
Ouellette, M. M. and Lee, K. (2001) Telomerase: Diagnostics, cancer therapeutics and tissue engineering. Drug Discov. Today
6, 1231–1237.
<Occurrence Type="DOI"><Handle>10.1016/S1359-6446(01)02052-9</Handle></Occurrence>
|
| |
| 37. |
Bodnar, A. G., Ouellette, M., Frolkis, M., et al. (1998) Extension of life-span by introduction of telomerase into normal
human cells. Science
279, 349–352.
|
| |
| 38. |
Morales, C. P., Holt, S. E., Ouellette, M., et al. (1999) Absence of cancer-associated changes in human fibroblasts immortalized
with telomerase. Nat. Genet.
21, 115–118.
|
| |
| 39. |
Jiang, X. R., Jimenez, G, Chang, E., et al. (1999) Telomerase expression in human somatic cells does not induce changes associated
with a transformed phenotype. Nat. Genet.
21, 111–114.
|
| |
| 40. |
Shay, J. W. and Wright, W. E. (2001) Aging. When do telomeres matter? Science
291, 839–840.
|
| |
| 41. |
Furukawa, T., Duguid, W. P., Rosenberg, L., Viallet, J., Galloway, D. A., and Tsao, M. S. (1996) Long-term culture and immortalization
of epithelial cells from normal adult human pancreatic ducts transfected by the E6E7 gene of human papilloma virus 16. Am. J. Pathol.
148, 1763–1770.
|
| |
| 42. |
Ouyang, H., Mou, L. J., Luk, C, et al. (2000) Immortal human pancreatic duct epithelial cell lines with near normal genotype
and phenotype. Am. J. Pathol.
157, 1623–1631.
|
| |
| 43. |
Jesnowski, R., Muller, P., Schareck, W., Liebe, S., and Lohr, M. (1999) Immortalized pancreatic duct cells in vitro and in vivo. Ann. NY Acad. Sci.
880, 50–65.
|
| |
| 44. |
Halbert, C. L., Demers, G. W., and Galloway, D. A. (1992) The E6 and E7 genes of human papillomavirus type 6 have weak immortalizing
activity in human epithelial cells. J. Virol.
66, 2125–2134.
|
| |
| 45. |
Ouellette, M. M., Aisner, D. L., Savre-Train, I., Wright, W. E., and Shay, J. W. (1999) Telomerase activity does not always
imply telomere maintenance. Biochem. Biophys. Res. Commun.
254, 795–803.
|
| |
| 46. |
Counter, C. M., Hahn, W. C, Wei, W., et al. (1998) Dissociation among in vitro telomerase activity, telomere maintenance,
and cellular immortalization. Proc. Natl. Acad. Sci. USA
95, 14723–14728.
|
| |