The influence of growth factors on the proliferative potential of normal and primary breast cancer-derived human breast epithelial cells
- 1 January 1991
- journal article
- Published by Springer Nature in Breast Cancer Research and Treatment
- Vol. 17 (3) , 221-230
- https://doi.org/10.1007/bf01806371
Abstract
In previous studies, we developed serum-free, bovine pituitary extract (BPE)-free culture conditions for the growth of normal and neoplastic rat mammary epithelial cells. The present studies were aimed at determining if these culture methods could be used to study the influence of specific growth factors on the proliferative potential of normal human mammary epithelial (HME) cells and cells derived from human breast cancer (HBC) specimens. Our results indicate that normal HME cells in primary culture express stringent requirements for insulin (IN), epidermal growth factor (EGF), and cholera toxin (CT). Of these factors, EGF is most important, with essentially no proliferation taking place in the absence of this factor. By contrast, when cells are grown in serum-free primary culture in the presence of a full complement of growth factors and then subcultured, growth in secondary culture is not influenced by the removal of individual growth factors. Growth in secondary culture in the absence of EGF is mediated by autocrine factors secreted by the cells. However, there is no evidence for autocrine activity that mediates growth in the absence of IN in secondary cultures. Primary culture of HBC cells in serum-free, BPE-free medium revealed two patterns of growth factor requirements. One set of HBC cells expressed identical requirements for IN and EGF in primary culture as normal cells. Likewise, these cells grew in secondary culture in the absence of either factor. The second set of tumors expressed independence of IN for growth in primary culture. These cells grew to confluence in primary culture in the absence of IN and could be subcultured in this medium. All tumor cells examined expressed a requirement for EGF for primary culture growth, whereas none of the HBC cells examined expressed a significant CT requirement. In many cases, growth in the absence of CT exceeded that observed in its presence. Thus, our culture system allows analysis of the growth factor requirements of HME and HBC cells in primary culture. Our results indicate significant differences between HME and HBC cells in this regard. However, the results of secondary culture experiments indicate that the growth factor milieu from which cells are taken can have a profound effect on the requirements for growth factors in culture.Keywords
This publication has 19 references indexed in Scilit:
- ISOLATION AND CHARACTERIZATION OF A SPONTANEOUSLY IMMORTALIZED HUMAN BREAST EPITHELIAL-CELL LINE, MCF-101990
- Expression of the Transforming Growth Factor-α/Epidermal Growth Factor Receptor Pathway in Normal Human Breast Epithelial CellsEndocrinology, 1990
- Distinctive traits of normal and tumor-derived human mammary epithelial cells expressed in a medium that supports long-term growth of both cell types.Proceedings of the National Academy of Sciences, 1989
- Transforming Growth Factor α Production and Epidermal Growth Factor Receptor Expression in Normal and Oncogene Transformed Human Mammary Epithelial CellsMolecular Endocrinology, 1989
- Influence of hormone and growth factor interactions on the proliferative potential of normal rat mammary epithelial cells in vitroJournal of Cellular Physiology, 1987
- Mouse epidermal keratinocytesExperimental Cell Research, 1984
- Integrated control of growth and differentiation of normal human prokeratinocytes cultured in serum‐free medium: Clonal analyses, growth kinetics, and cell cycle studiesJournal of Cellular Physiology, 1984
- Serum-free growth of human mammary epithelial cells: rapid clonal growth in defined medium and extended serial passage with pituitary extract.Proceedings of the National Academy of Sciences, 1984
- Clonal growth and serial propagation of rat esophageal epithelial cellsIn Vitro Cellular & Developmental Biology - Plant, 1983
- Cholera toxin stimulation of human mammary epithelial cells in cultureIn Vitro Cellular & Developmental Biology - Plant, 1982