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Biomedical subjects

L Tait

Publications and source records attributed to L Tait.

29 records · Page 2Linked to original sources

Transformation of human breast epithelial cells by c-Ha-ras oncogene.

To determine whether the c-Ha-ras oncogene plays a role in the initiation of mammary carcinogenesis, an immortalized human breast epithelial cell line, MCF-10A, was transfected with the plasmid vector pHo6T1 containing the T24 Ha-ras oncogene and the aminoglycoside phosphotransferase gene, which confers resistance to geneticin. Transfected cells exhibited an altered pattern of growth and tridimensional morphology in collagen gel. They also exhibited anchorage-independent growth and loss of requirement for hormones and epidermal growth factor; in addition, they expressed invasiveness and increased collagenolytic activity in an in vitro system and became tumorigenic in irradiated nude mice, all properties indicative of malignant transformation. Transformed cells contained the mutated c-Ha-ras oncogene and expressed the p21 mutated protein. These data indicate that the c-Ha-ras oncogene is capable of inducing malignant phenotypes in immortalized human breast epithelial cells.

Breast↗

Morphological expression of cell transformation induced by c-Ha-ras oncogene in human breast epithelial cells.

The present work describes the morphological pattern of c-Ha-ras-transformed MCF-10A cells. This immortalized human breast epithelial cell line was transfected utilizing the calcium phosphate technique with pHo6 containing the neomycin-resistant gene alone, and identified as MCF-10Aneo, or with the normal Ha-ras proto-oncogene, MCF-10AneoN, or with the human p24 mutated Ha-ras oncogene, MCF-10AneoT cells. These three cell types were studied by scanning and transmission electron microscopy at passages 6 and 20 post-transfection. It was observed that transfection with the plasmid alone did not induce any morphological changes in MCF-10A cells. These two cell types exhibited those features that are characteristic of mammary epithelial cells in culture. Amplification of the normal c-Ha-ras oncogene by transfection induced significant morphological changes at the level of cell shape, from flat to cuboidal, and cytoplasmic changes suggesting a more metabolically active cell. These changes were made more prominent by transfection with the mutated ras oncogene, which induced stratification of a cuboidal epithelium and increase in cell size as well as a more pleomorphic nuclear and cytoplasmic appearance. Distinctive features induced by the mutated c-Ha-ras oncogene were the lengthening and thickening of cell surface microvilli, formation of blebs and emission of filopodial projections. It induced cytoplasmic changes consisting of formation of intracellular lumina, and increased the number of lysosomes, mitochondria and glycogen content, significantly decreasing the number of intermediate filaments. This is the first report that describes the morphological characteristics of a human breast epithelial cell line transformed in vitro.

Breast Neoplasms↗

Ultrastructural and immunocytochemical characterization of an immortalized human breast epithelial cell line, MCF-10.

The human breast epithelial cell line MCF-10 was derived from s.c. mastectomy tissue from a 36-year-old, parous, premenopausal woman with fibrocystic disease. It was initiated as a mortal cell line (MCF-10M), which senesces when transferred serially in 1.05 mM calcium. These cells spontaneously gave origin to two immortal sublines, MCF-10A, or attached cells, and MCF-10F, or floating cells, which have proliferated for more than 4 years in Dulbecco's modified essential medium and Ham's F-12 either with the customary calcium concentration of 1.05 mM (DMEM-H) or in medium containing 0.04 mM calcium or low calcium. Studies reported here indicate that MCF-10 is a mammary epithelial cell line. Electron microscopy showed that both MCF-10A and MCF-10F have characteristics of luminal ductal cells, but not of myoepithelial cells. When grown for more than 1200 days in Dulbecco's modified essential medium-Ham's F-12 and low calcium media, respectively, they maintained their epithelial characteristics, although the concentration of calcium exerted a powerful influence on cell morphology. Cells grown in Dulbecco's modified Eagle's medium-Ham's F12 medium are low cuboidal with numerous desmosomes and short microvilli, whereas those grown in low calcium medium have significantly reduced number of desmosomes, are more spherical, and have greater numbers of microvilli which are longer than those of cells grown in DMEM-H. The breast epithelial orgin of these cells was confirmed by immunocytochemical detection of epithelial sialomucins and keratins. The monoclonal antibodies MFA-breast and MC5 and the polyclonal antibody epithelial membrane antigen were used to detect the epithelial sialomucins. Keratins were characterized by using KA-4, K-14, AE1/AE3, and K-19 specific antibodies. It was concluded that MCF-10A and MCF-10F cells are breast epithelial cells and that they represent an important tool for studies of the basic processes of growth and carcinogenesis.

Adult↗

Calcium-mediated modulation of microtubule assembly in human breast epithelial cells.

Normal human breast epithelial cells obtained from a reduction mammoplasty (S130) have been maintained in culture for up to a year in Ham's F12:Dulbecco's medium, with 5% equine serum and a low calcium concentration (0.04 mM). These cells undergo senescence and terminal differentiation if they are switched to high Ca2+ medium (1.05 mM). To clarify the mechanism by which Ca2+ regulates the growth of these cells, we studied the role of tubulin assembly-disassembly and the morphologic changes subsequent to high Ca2+ switch. An early Passage (9) of S130 breast epithelial cells growing in low Ca2+ medium was analyzed. Of a total of 785 counted cells, 720 (92%) were rounded and 65 (8%) were flat, elongated, and fibroblastlike. When the cells were switched to high Ca2+ medium, out of 553 cells, only 111 (20%) were rounded and the remaining 442 (80%) were elongated and fibroblastlike. Immunocytochemical localization of tubulin, using the immunogold silver enhancement technique, showed that the majority of low Ca2(+)-grown cells did not display a network of tubulin fibers, whereas high Ca2(+)-grown cells revealed extensive cytoplasmic network of polymerized tubulin, which seemed to stretch out the cells. Experiments designed to determine the mechanisms of tubulin polymerization in these cells revealed that: a) Cells grown in high Ca2+ medium containing 0.1 mM colchicine had a reduced proportion of elongated cells; b) treatment of the cells with the calcium ionophore A23187 in low calcium medium resulted in an increase in the number of elongated cells which had more polymerized tubulin; and d) treatment of the cells with cyclic-AMP in low Ca2+ medium had no observable effect on cell morphology. These results indicate that high levels of Ca2+ either favor tubulin polymerization or stabilize the polymerized state.

Breast↗

Susceptibility of the mammary gland to carcinogenesis. III. The cell of origin of rat mammary carcinoma.

The rat mammary gland epithelium is composed of three cell types: dark cells (DCs), intermediate cells (ICs), and a layer of myoepithelial cells (MCs), which are evenly distributed along the mammary gland tree in rather constant proportions. The present study was carried out for a determination of the effect of the carcinogen 7,12-dimethylbenz(a)anthracene (DMBA) on the distribution and proliferative activity of these cell populations. The proportion and the DNA labeling index (DNA-LI) of each cell type were determined in terminal end buds (TEBs), terminal ducts (TDs), alveolar buds (ABs), and alveoli of the normal Sprague-Dawley rat mammary gland and in intraductal proliferations (IDPs) and carcinomas removed at selected intervals after DMBA administration. DMBA-induced changes in cell distribution were limited to TEBs and TDs, whereas ABs and alveoli were unaffected. The alterations consisted in an increment in ICs from 11% in TEBs and TDs to 90% in tumors and a decrease in DCs from 77% in TEBs and TDs to 7% in tumors. MCs were relatively unaffected. The DNA-LI of DCs, which in the normal gland TEB was 14%, was depressed by DMBA to 6%, whereas the DNA-LI of ICs remained unchanged from the basal level of 40% during the process of carcinogenesis. The progressive increment in number of ICs with a steady DNA-LI suggested that the IC is the target cell of the carcinogen and the cell of origin of mammary carcinomas.

9,10-Dimethyl-1,2-benzanthracene↗

Influence of age and parity on the susceptibility of rat mammary gland epithelial cells in primary cultures to 7,12-dimethylbenz(a)anthracene.

Mammary gland epithelial cells from rats of different ages or with different reproductive histories vary in their proliferative properties and susceptibility to dimethylbenz(a)anthracene (DMBA) carcinogenesis in vivo. The present study was carried out to determine whether these differences are maintained under in vitro conditions. Primary cultures of mammary gland epithelial cells of young virgin, old virgin, and parous rats were treated with various doses of DMBA. Growth rates, DNA synthesis, and dose-response curves were determined; the toxicity of DMBA was measured by its effect on cell growth. Cell morphology was studied by transmission and scanning electron microscopy. Epithelial cells from the mammary gland of young virgin rats adapted rapidly to the culture conditions, behaving as if the cells were in the logarithmic phase of growth prior to plating. Mammary gland epithelial cells from old virgin and parous rats required a lag period prior to cell growth during which the proliferating cells adapted to the culture conditions. Cells from each group had comparable doubling times, and DNA synthesis peaked approximately 1 d after initiation of growth in culture. The numbers of proliferating cells decreased with increasing age and parity of the donor. Mammary gland epithelial cells of young virgin rats were more susceptible to both low and high doses of DMBA than those of old virgin and parous rats when the carcinogen was added either 24 h after plating or at the peak of DNA synthesis. These results indicate that age and parity influence the proliferative status of the cells and their susceptibility to DMBA in vitro, simulating in that way the in vivo situation.

9,10-Dimethyl-1,2-benzanthracene↗