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American Journal of Pathology, Vol 142, 893-905, Copyright © 1993 by American Society for Investigative Pathology


REGULAR ARTICLES

Morphology and growth characteristics of epithelial cells from classic Wilms' tumors

DJ Hazen-Martin, AJ Garvin, T Gansler, BI Tarnowski and DA Sens
Department of Pathology and Laboratory Medicine, Medical University of South Carolina, Charleston 29425.

The ability to establish cell cultures representing the epithelial component of Wilms' tumor was determined for 18 cases of classic Wilms' tumors. From these 18 cases only two resulted in the culture of epithelial cells. Although the tumors from both cases were composed of a prominent epithelial component, other classic tumors not producing epithelial cell cultures also possessed appreciable epithelial components. Likewise, heterotransplants of these two primary tumors failed to give rise to epithelial cell cultures, although cultures of the blastemal element were produced. This suggests that Wilms' tumors may be prone to differentiate in different directions at varying times during tumor growth, possibly dependent on local tumor environment. Epithelial cells from these two classic cases were grown in culture in basal medium composed of a 1:1 mixture of Dulbecco's modified Eagle's medium and Ham's F-12 medium, supplemented with selenium, insulin, transferrin, hydrocortisone, tri-iodothyronine, and epidermal growth factor, on a collagen type I matrix with absorbed fetal calf serum proteins. One of the two cases also required the addition of bovine pituitary extract, ethanolamine, prostaglandin E1, and putrescine for optimum growth. Morphological analysis disclosed that the cultured cells were very similar to normal renal tubular cells in culture, except that the cells displayed little evidence for differentiated active ion transport and tended to grow in a multilayered arrangement. The culture of the epithelial cells from classic Wilms' tumors provides a model system for the study of tumor differentiation and progression.


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D. Haber, S Park, S Maheswaran, C Englert, G. Re, D. Hazen-Martin, D. Sens, and A. Garvin
WT1-mediated growth suppression of Wilms tumor cells expressing a WT1 splicing variant
Science, December 24, 1993; 262(5142): 2057 - 2059.
[Abstract] [PDF]




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Copyright © 1993 by the American Society for Investigative Pathology.