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V Cappelletti

Publications and source records attributed to V Cappelletti.

At least 19 recordsLinked to original sources

Selective modulation of ER-beta by estradiol and xenoestrogens in human breast cancer cell lines.

In the last decades, substances with estrogenic activity have been dispersed into the environment. Xenoestrogens act by binding to estrogen receptors, ligand-regulated transcription factors, for which two subtypes have been described, ER-alpha and ER-beta, which are often coexpressed at variable amounts in different tissues. We investigated variations in the expression of ER-alpha and ER-beta mRNAs following treatment with four xenoestrogens (bisphenol A, 4-tert octylphenol, 2-hydroxybiphenyl, 4-hydroxybiphenyl) and with 17beta-estradiol in estrogen-sensitive (T47D) and estrogen-insensitive (BT20) breast cancer cell lines. Although to a variable extent, both estradiol and the tested xenoestrogens increased the expression of ER-beta mRNA, whereas a slight effect on ER-alpha was observed only in T47D cells. Upregulation of ER-beta expression by estradiol and xenoestrogens was observed only in the presence of detectable ER-alpha protein levels. These findings indicate a regulatory role for ER-beta in ER-alpha-mediated transcription and a role for ER-beta in mediating xenoestrogen toxicity.

Benzhydryl Compounds↗

Genistein blocks breast cancer cells in the G(2)M phase of the cell cycle.

Genistein, a natural isoflavone phytoestrogen present in soybeans, caused a dose-dependent growth inhibition of the two hormone-sensitive cell lines T47D and ZR75.1 and of the two hormone-independent cell lines MDAMB-231 and BT20. Flow cytometric analysis of cells treated for 4 days with 15 and 30 microM genistein showed a dose-dependent accumulation in the G(2)M phase of the cell cycle. At the highest tested concentration, there was a sevenfold increase in the percentage of cells in G(2)M (63%) with respect to the control (9%) in the case of T47D cells and a 2.4-fold increase in the case of BT20. An intermediate fourfold accumulation was observed in the case of MDAMB-231 and ZR75.1. The G(2)M arrest was coupled with a parallel depletion of the G(0)/G(1) phase. To understand the mechanism of action underlying the block in G(2)M induced by genistein, we investigated the expression and the activity of cyclins and of cyclin-dependent kinases specifically involved in the G(2)-->M transition. As expected, p34(cdc-2) expression, monitored by Western blotting, was unaffected by genistein treatment in all cell lines. With exception of the T47D cell line, we revealed an increase in the tyrosine phosphorylated form of p34, suggesting an inactivation of the p34(cdc-2) catalytic activity consequent to treatment of cells with genistein. In fact, immunoprecipitates from genistein-treated MDAMB-231 and BT20 cells displayed a fourfold decrease in kinase activity evaluated using the histone H1 as substrate. Conversely, no variation in kinase activity was observed between treated and untreated ZR75.1 cells despite the increase in p34 phosphorylation. In cells treated with 30 microM genistein, cyclin B(1) (p62) increased 2.8-,8-and 103-fold, respectively, in BT20, MDAMB-231, and ZR75.1 cells, suggesting an accumulation of the p62, which is instead rapidly degraded in cycling cells. No effects were observed on cyclin expression in T47D cells. We therefore conclude that genistein causes a G(2)M arrest in breast cancer cell lines, but that such growth arrest is not necessarily coupled with deregulation of the p34(cdc-2)/cyclin B(1) complex only in all of the studied cell lines.

Antineoplastic Agents↗

The two phyto-oestrogens genistein and quercetin exert different effects on oestrogen receptor function.

We compared the oestrogenic and anti-oestrogenic properties of the two well-known phyto-oestrogens, genistein and quercetin, on the oestrogen-sensitive breast cancer cell line MCF-7. Genistein exerted a biphasic effect on growth of MCF-7 cells, stimulating at low and inhibiting at high concentrations, whereas quercetin was only growth inhibitory. At doses which did not inhibit cell growth, respectively 5 and 1 microM, genistein and quercetin counteracted oestrogen- and transforming growth factor-alpha-promoted cell growth stimulation. Furthermore, genistein promoted transcription of the oestrogen-regulated genes pS2 and cathepsin-D, whereas quercetin interfered with the oestrogen-induced expression of the proteins. In in vitro binding experiments, genistein competed with oestradiol for binding to the oestrogen receptor (ER), but quercetin did not. Quercetin and genistein down-regulated cytoplasmic ER levels and promoted a tighter nuclear association of the ER, but only genistein was able to up-regulate progesterone receptor protein levels. In gel mobility assays, ER preincubation with oestradiol or with the two phyto-oestrogens led to the appearance of the same retarded band, excluding differences between the various complexes in binding to the consensus sequence. The data allowed us to conclude that quercetin acts like a pure anti-oestrogen, whereas genistein displays mixed agonist/antagonist properties, and to formulate a hypothesis on the possible mechanism of action of such phyto-oestrogens.

Amino Acid Sequence↗

Genistein in the control of breast cancer cell growth: insights into the mechanism of action in vitro.

Genistein significantly inhibited cell growth (IC50 around 10 microM) of MCF-7, MDAMB-231 and HBL-100 cell lines, but not of skin-derived fibroblasts and counteracted the growth-stimulatory effects exerted by estradiol and growth factors. It abolished the paracrine stimulation observed in MCF-7 cells in co-culture with MDAMB-231 or fibroblasts. Genistein-treated cells accumulated in the S and G2/M phases of the cell cycle and underwent apoptosis. Genistein decreased tyrosine phosphorylation induced upon treatment with transforming growth factor-alpha. Finally, genistein bound the estrogen receptor (ER) (relative affinity constant Kd = 4 nM), induced pS2 and cathepsin-D transcription and increased nuclear ER levels.

Antineoplastic Agents↗

int-2 oncogene amplification and prognosis in node-negative breast carcinoma.

The role of int-2 oncogene amplification on the prognosis of breast cancer patients was investigated in 128 patients with node-negative primary breast cancers given first-line local-regional treatments until relapse and with a median follow-up of 65 months. Tumours had been previously characterised for oestrogen (ER) and progesterone receptor (PgR) status and proliferative activity (3H-thymidine labelling index). Amplification of the int-2 oncogene occurred in 18% of cases and was significantly related to the presence of hormone receptors and to menopausal status or age, but not to proliferative status. Patients with tumours exhibiting int-2 amplification had a lower probability of disease-free survival than patients with non-amplified tumours and frequently developed local-regional recurrence. Disease-free survival analysis, adjusted for the prognostic contribution provided by tumour size, steroid receptors and proliferative rate, indicated that the association between int-2 amplification and risk of relapse was maintained and remained constant even in the presence of the other co-variates. Interestingly, int-2 amplification was a further prognostic discriminant within subsets of patients with a putatively good (i.e., tumour size <20 mm, ER+ and PgR+) or poor prognosis (i.e., high labelling index). Our exploratory study suggests that within node-negative patients, int-2 amplification could be a valuable and independent prognosticator, useful to identify patients at high risk of local-regional recurrence.

Analysis of Variance↗

Modulation of cathepsin-D and pS2 protein levels in human breast cancer cell lines.

Cathepsin-D and pS2 are two estrogen-regulated proteins in human breast cancer cell lines. They have been considered possible prognostic factors in breast cancer, but results have been contradictory. To better understand the regulation of these proteins, we investigated the role of estradiol (E2), serum, and growth factors in hormone-dependent (MCF-7, ZR75.1) and hormone-independent (MDAMB-231, BT20) breast cancer cell lines. E2 treatment in serum-free conditions increased intracellular and secreted levels of pS2 in ZR75.1 and in MCF-7, secreted levels only of cathepsin-D in MCF-7, and both levels of cathepsin-D in ZR75.1. Insulin-like growth factor I (IGF-I) and progesterone receptors were also stimulated by E2, whereas the estrogen receptor was down-regulated. Following treatment with epidermal growth factor (EGF), secreted pS2 levels doubled only in MCF-7 cells. IGF-I did not modify cathepsin-D or pS2 levels in either cell line, but caused an increase in its own receptor. Cathepsin-D and pS2 doubled in MCF-7 cells grown in medium supplemented with denaturated serum, but estrogen regulation of these proteins was still maintained. Cathepsin-D was expressed in MDAMB-231 and BT20, but its levels were modified by neither E2 nor growth factor treatment. Conversely, neither cell line expressed detectable levels of pS2 before or after treatment. In conclusion, our results show that in different types of breast cancer cells, some estrogen-regulated proteins (e.g. pS2) are also regulated by growth factors-such as EGF and other unknown serum factors. This may account for the contradictory results obtained regarding the prognostic relevance of cathepsin-D and pS2.

Breast Neoplasms↗

Influence of different combinations of tamoxifen and toremifene on estrogen receptor-positive breast cancer cell lines.

Acquired tamoxifen (TAM) resistance is supposed to be the major cause of hormone therapy failure in estrogen receptor (ER)-positive breast cancer patients. Toremifene (TOR), a chlorinated TAM-related compound, has been found to be more effective and less toxic than TAM. Moreover 4-hydroxy-toremifene (OH-TOR), like 4-hydroxy-tamoxifen (OH-TAM), is the most effective metabolite in human. To better understand the relative role of TAM, TOR, OH-TAM, and OH-TOR, singly or in combination, we studied their effect on MCF7, ZR-75.1, and T47D cell lines, which, despite their positive receptor status, have a different responsiveness to estradiol and antiestrogenic compounds. The results may be summarized as follows; in MCF7 cells, all compounds, singly or in association, showed an inhibitory effect; ZR75.1 cells were resistance to TAM and OH-TAM, but partially sensitive to TOR and OH-TOR; in T47D cells, all compounds displayed their estrogenic activity and induced cell growth. These result suggest the inefficacy of these triphenylethylene derivatives as a hormone treatment even when given in a simultaneous or sequential combination.

Antineoplastic Combined Chemotherapy Protocols↗

p53 as an independent prognostic marker in lymph node-negative breast cancer patients.

BACKGROUND: At present, most decisions concerning the use of adjuvant therapy in lymph node-negative breast cancer patients are made on the basis of traditional factors such as tumor size, nodal status, and histopathologic features. However, prognostic factors are being investigated that could identify high-risk groups and that could better address treatment efforts for those patients. Identification of more accurate prognostic markers, such as the expression of the mutant p53 protein encoded by the p53 (also known as TP53) tumor suppressor gene, that are reproducible, easily assessable, and independent in predicting clinical outcome would have a beneficial impact on cancer treatment decisions. PURPOSE: Our purpose was to analyze the predictive relevance of mutant p53 protein expression on 6-year relapse-free and overall survival in node-negative breast cancer patients in relation to menopausal status, tumor size, cell kinetics, and estrogen receptor status. METHODS: Expression of mutant p53 protein was detected by an immunohistochemical technique using a 1:50 dilution of PAb1801 monoclonal antibody on paraffin-embedded tumor specimens obtained from 256 axillary lymph node-negative breast cancer patients, with long-term follow-up (median, 72 months). The [3H]thymidine labeling index, a measure of cell kinetics, was evaluated on histologic sections after fresh tumor tissue was labeled with [3H]thymidine. Estrogen receptor status was determined by the dextran-coated charcoal absorption technique. Statistical comparisons were made for levels of p53 protein expression, [3H]thymidine labeling index, estrogen receptor status, tumor size, and menopausal status with respect to 6-year relapse-free survival and overall survival. RESULTS: Overexpression of the p53 protein, defined as the presence of more than 5% positive cells, was detected in 113 (44%) of 256 tumors. Odds ratios (ORs) for multiple regression analysis of 6-year relapse-free survival were significantly higher for p53 (OR = 3.24; 95% confidence limits [CL] = 2.01-5.23) and [3H]thymidine labeling index (OR = 1.92; 95% CL = 1.19-3.12), both of which appeared to be the most relevant indicators of relapse, than for tumor size (OR = 1.49; 95% CL = 0.94-2.38) and estrogen receptor status (OR = 0.91; 95% CL = 0.55-1.51). Overexpression was found to be unrelated to menopausal status. CONCLUSIONS: Immunohistochemically detected p53 overexpression is an independent marker for shortened 6-year relapse-free and overall survival in node-negative patients with resectable breast cancers. Based on these findings, p53 overexpression should be used with other established prognostic factors, such as [3H]thymidine labeling index and estrogen receptor status, to further refine the prognostic assessment of node-negative breast cancer.

Adult↗

Paracrine interaction in co-culture of hormone-dependent and independent breast cancer cells.

A permeable solid support (Transwell Coll.) was used to develop serum-free co-cultures allowing paracrine interactions between hormone-dependent (MCF-7, ZR75.1) and hormone-independent (MDAMB-231, BT20) breast cancer cell lines. Both hormone-independent cell lines were able to stimulate the growth of the hormone-dependent lines, whereas the opposite was observed only in the case of BT20 co-culture with ZR75.1 cells. The cell growth stimulation observed in co-cultures could be abolished by the addition to the culture medium of an excess of transforming growth factor alpha (TGF alpha) or insulin-like growth factor I (IGF-I). Similarly, treatment with a neutralizing anti TGF alpha antibody impaired the growth stimulation exerted by hormone-independent cells on hormone-dependent cells. These results confirm the important role of paracrine interactions in control of the growth of human heterogeneous breast tumors and suggest that the main growth factors involved in such interactions are TGF alpha and probably some growth factors from the insulin-like growth factor family rather than IGF-I itself.

Breast Neoplasms↗

Quantitative immunohistochemical determination of cathepsin-D and its relation with other variables.

The expression of cathepsin D was evaluated by immunohistochemistry on histologic sections from formalin-fixed samples in a series of 436 primary breast cancers. The fraction of cathepsin D-positive tumor cells was not related to tumor size or hormone receptor status, and only weakly related to proliferative activity, evaluated as the 3H-thymidine labeling index. Conversely, a higher fraction of positive cells was observed in node-positive than in node-negative tumors (p = 0.05). A matched comparison between immunohistochemical and immunoradiometric results on individual tumors was carried out on 100 cases and showed a significant association but with a correlation coefficient of 0.46. The agreement of results from the two assays was higher in ER- than in ER+ tumors, which sometimes showed an immunostaining limited to macrophages and normal epithelial cells. In situ evaluation has the main advantage of being specifically applicable to detection in tumor cells and allows the simultaneous determination of different biologic aspects for a more complete understanding of breast cancer biology.

Breast Neoplasms↗

Prognostic relevance of pS2 status in association with steroid receptor status and proliferative activity in node-negative breast cancer.

Expression of the oestrogen-regulated pS2 protein was investigated on paraffin-embedded sections of primary breast tumours from 200 node-negative patients. Immunoreactivity was observed in 56% of the cases. pS2 expression was inversely correlated with tumour size and proliferative activity, whereas a direct correlation was observed with steroid receptor. 5-year relapse free survival was influenced by tumour size (P = 0.02), oestrogen receptor status (P less than 0.05), and proliferative activity (P less than 0.01). No difference in relapse-free survival was observed between patients subdivided according to pS2 expression alone. However, among patients with oestrogen-receptor-negative tumors, pS2 expression predicted a shorter relapse-free survival.

Breast Neoplasms↗

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Biology↗

Prognostic relevance of cathepsin D versus oestrogen receptors in node negative breast cancers.

The concentration of total cathepsin D in cytosols of 199 node negative women with primary breast cancer in a 10-year retrospective cohort was assayed. Cathepsin D status alone was unable to predict disease-free or overall survival. However, those patients with receptor positive tumours who were cathepsin D positive had shorter [corrected] disease-free (P = 0.02) and overall survival (P = 0.01) than cathepsin D negative patients. Therefore, measurement of cathepsin D appears to provide additional prognostic information for the prediction of disease-free and overall survival in patients with node negative breast cancer.

Breast Neoplasms↗

Interaction between hormone-dependent and hormone-independent human breast cancer cells.

We developed two different models based on in vitro co-culture of hormone-dependent and hormone-independent cell lines to simulate the cell population heterogeneity of human breast cancer tumours. Oestrogen-dependent (MCF-7, ZR 75.1) and oestrogen-independent cell lines (MDAMB-231 BT-20) were grown under serum-free conditions. Co-culture of hormone-dependent and hormone-independent cell lines resulted in an increased cell yield compared to single cell cultures carried out at the same seeding ratios. Such an increase was not affected by addition of oestradiol and single growth factors (EGF, bFGF and IGF-I). These results allow us to conclude that in a heterogeneous cell population like human breast tumours, interaction between hormone-dependent and hormone-independent cell lines may result in a complex regulation of cell growth.

Breast Neoplasms↗

Activity of tamoxifen and its metabolites on endocrine-dependent and endocrine-independent breast cancer cells.

To better understand the mechanism of action of antiestrogens, the growth-inhibitory effect of tamoxifen and its main metabolites N-desmethyltamoxifen and 4-hydroxytamoxifen, was studied in 6 breast cancer cell lines characterized by different steroid receptor contents. On the basis of the results, our cell lines could be classified into three groups: a first group, including 734B and ZR-75.1 cell lines, characterized by a clear endocrine-dependent behavior, in which cells were sensitive to antiestrogens although to different degrees; a second group, including MDA-MB 231 and BT20 cell lines, characterized by a clear endocrine-insensitive behavior, in which cells were affected only by the highest (10(-6) M) antiestrogen concentration; a third group, including MCF7 and T47D cell lines, characterized by a peculiar behavior. The T47D cell line displayed an increased growth rate after treatment with all three antiestrogens considered. Despite the positive receptor content in the MCF7 cell line, only 4-hydroxytamoxifen showed a clear antiestrogen dose-dependent effect, whereas tamoxifen decreased the cell growth rate only at lower concentrations (10(-8) and 10(-7) M). These results and the well-known heterogeneity of human breast tumors explain the failure of antiestrogen treatment in a certain percentage of patients with breast cancer with a positive estrogen receptor status.

Breast Neoplasms↗

Influence of culture conditions on the estrogenic cell growth stimulation of human breast cancer cells.

17 beta-Estradiol is a potent mitogen for hormone-dependent cell lines (MCF-7, T47D and ZR 75.1). However, the degree of hormone sensitivity is very much influenced by culture conditions. In order to understand which factors modulate estrogenic effects on cell growth, four different culture conditions were used: (a) medium with dextran-coated charcoal-treated fetal calf serum (DCC-FCS); (b) medium with dextran-coated charcoal-treated growth factor-inactivated serum (DCC-FCSd); (c) serum-free medium, after a 24-h incubation with serum to allow cell attachment; and (d) serum-free medium on collagen IV-treated plates. In all cell lines the highest cell growth stimulation was achieved when estradiol was added in the presence of 5% DCC-FCS, whereas reducing or removing serum from the culture medium resulted in a decrease in cell proliferation stimulation. We postulate that serum contains some still unknown components able to modulate the degree of estrogenic action in endocrine-dependent breast cancer cell lines.

Breast Neoplasms↗