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Biomedical subjects

M E Lippman

Publications and source records attributed to M E Lippman.

At least 55 records · Page 3Linked to original sources

Effects of AGM-1470 and pentosan polysulphate on tumorigenicity and metastasis of FGF-transfected MCF-7 cells.

Previously, we described FGF-1- or FGF-4-transfected MCF-7 breast carcinoma cells which are tumorigenic and metastatic in untreated or tamoxifen-treated ovariectomised nude mice. In this study, we have assessed the effects of AGM-1470, an antiangiogenic agent, and pentosan polysulphate (PPS), an agent that abrogates the effects of FGFs, on tumour growth and metastasis produced by these FGF-transfected MCF-7 cells. Untreated or tamoxifen-treated ovariectomised mice were injected with FGF-transfected cells, treated with AGM-1470 or PPS, and tumour growth and metastasis analysed. The sensitivity of FGF-transfected and parental MCF-7 cells to AGM-1470 or PPS was also determined in vitro. Both AGM-1470 and PPS inhibited tumour growth in otherwise untreated or tamoxifen-treated mice injected with either FGF- or FGF-4-transfected MCF-7 cells. This effect was more reliably seen in tamoxifen-treated animals. AGM-1470 was about 10(5) times less potent in inhibiting the anchorage-dependent growth of parental MCF-7 or FGF-transfected MCF-7 cells than in inhibiting the growth of human umbilical vein endothelial cells. PPS did not affect the in vitro growth of the transfectants or parental cells. Thus, the growth-inhibitory effect on tumours was in excess of the effect of either drug on the same cells in tissue culture, implying that stromal elements are important determinants of the effects of these drugs. There was a positive correlation between tumour size and the extent of proximal lymph node metastasis. However, neither drug had a significant effect on the extent of metastasis to proximal or distal lymph nodes or lungs. AGM-1470 or PPS may be helpful in cases of breast carcinoma in which angiogenesis is due to expression of FGFs by the tumour cells and may be more effective when combined with tamoxifen.

Animals↗

Intensive outpatient adjuvant therapy for breast cancer: results of dose escalation and quality of life.

PURPOSE: A dose-escalation study was conducted to determine the maximum-tolerated dose (MTD) and dose-limiting toxicities (DLTs) of cyclophosphamide (CY) in combination with granulocyte colony-stimulating factor (G-CSF0 and doxorubicin (DOX) given every 2 weeks for eight cycles as outpatient adjuvant therapy for node-positive breast cancer. A pilot study to assess quality of life (QOL) was performed. PATIENTS AND METHODS: From March 1991 to April 1993, 19 patients were entered. Patients received escalating doses of CY intravenously (i.v.) (1,000 mg/m2, 1,500 mg/m2, 2,000 mg/m2, or 2,500 mg/m2) with DOX 40 mg/m2, G-CSF 10 micrograms/kg/d on days 2 to 12, and mesna, every 2 weeks for eight cycles. QOL was measured by the Profile of Mood States (POMS), the Psychosocial Adjustment to Illness Scale-Self Report (PAIS-SR), and a 27-item QOL scale. RESULTS: The CY dose of 2,500 mg/m2 every 2 weeks elicited toxicities that required dose reductions secondary to a combination of thrombocytopenia, hematuria, and anemia that required transfusion. The dose of 2,000 mg/m2 resulted in an acceptable toxicity profile. Ninety-two percent of cycles at the 2,000-mg/m2 dose were delivered on schedule and 77% without hospitalization. QOL assessments indicated high levels of distress measured by POMS in 47%, poor overall quality of life in 40%, and significant problems with physical symptoms in less than 27% of all patients for any given cycle. CONCLUSION: A dose of CY at 2,000 mg/m2 can be administered every 2 weeks with DOX and G-CSF for eight cycles in the outpatient setting with manageable toxicity. The majority of women described levels of physical symptoms and emotional distress as tolerable during treatment.

Adult↗

Regulation of estrogen receptor concentration and activity by an erbB/HER ligand in breast carcinoma cell lines.

Expression of the erbB-2 oncogene in breast cancer patients correlates with poor prognosis and failure of hormonal therapy. In this study, the effects of a putative erbB/HER ligand, gp30, on estrogen receptor (ER) concentration and activity was investigated in the estrogen receptor positive human breast cancer cells, BT474 and MCF-7, which express either high or low levels of erbB-2 and erbB-4, respectively. Treatment of cells with gp30 resulted in a decrease in the steady-state level of estrogen receptor protein by approximately 70-80%. The effect of gp30 on the concentration of ER was independent of serum in the media and was not inhibited by an epidermal growth factor receptor blocking antibody. In addition to the effect on ER protein, gp30 decreased the steady-state level of ER messenger RNA. Transcription run on experiments demonstrated that the decrease in ER expression was mediated by a decrease in ER gene transcription. The effect of gp30 on estrogen receptor activity was also investigated in this study. Treatment of cells with gp30 blocked estradiol induction of progesterone receptor. Inhibition was observed at the level of progesterone receptor protein, messenger RNA, and gene transcription. gp30 also blocked estradiol induction of pS2 gene transcription. In addition to its effects on progesterone receptor and pS2, gp30 blocked activation of an estrogen response element in a transient transfection assay and inhibited ER binding to its response element in a DNA mobility shift assay, suggesting a direct effect on the estrogen receptor. The effects of gp30 on estrogen receptor concentration and activity were independent of the level of erbB-2 and erbB-4 in the cell. These data show that gp30 regulates the concentration of ER and modulates ER activity.

Breast Neoplasms↗

Affinity for the insulin-like growth factor-II (IGF-II) receptor inhibits autocrine IGF-II activity in MCF-7 breast cancer cells.

We have investigated the autocrine regulation of insulin-like growth factor-II (IGF-II) signaling by the insulin-like growth factor-I receptor (IGF-IR) and the insulin-like growth factor-II/mannose 6-phosphate receptor (IGF-IIR) in MCF-7 breast cancer cells, employing retroviruses encoding both IGF-I, IGF-II, and IGF-I and II mutants with reductions in affinity for either the IGF-IR or the IGF-IIR. These studies revealed reciprocal roles for IGF-IR and IGF-IIR affinity in the regulation of autocrine IGF-II activity. IGF-IR affinity was required for serum-free proliferation but also for efficient IGF-II secretion. In contrast, cellular proliferation, receptor tyrosine kinase-dependent signaling, and extracellular IGF-II protein accumulation were all reduced in the presence of IGF-IIR affinity. Inhibition of IGF-II signaling appeared to be the sole consequence of IGF-IIR affinity, as no cellular responses attributable to selective IGF-IIR binding by a reduced IGF-IR affinity IGF-II mutant could be detected. By operating as an IGF-II antagonist, the IGF-IIR has tumor suppressor-like properties, a suggestion consistent with reports of loss of heterozygosity at the IGF-IIR locus in a variety of human malignancies.

Amino Acid Sequence↗

Malignant breast epithelium selects for insulin-like growth factor II expression in breast stroma: evidence for paracrine function.

Paracrine interactions between stromal and epithelial cells are important influences on the growth and malignant behavior of breast cancers. Insulin-like growth factors I and II (IGF-I and II) are expressed by fibroblasts in benign and malignant breast lesions, and both are strong mitogens for a number of breast cancer epithelial cell lines in vitro. We have analyzed the stromal mRNA expression of IGF-I and IGF-II in matched sets of fibroblast cell lines derived from three locations in the affected breast of eight patients with breast cancer: (a) the breast tumor itself; (b) surrounding normal breast tissue; and (c) overlying breast skin. IGF-I expression was easily detected in all fibroblasts derived from normal breast tissue. In general, lesser amounts of IGF-I mRNA were detected in fibroblasts derived from breast tumors or skin. In contrast, IGF-II expression was detected at very low levels in only 3 of 8 normal breast fibroblasts, but was present in 6 of 8 tumor fibroblasts. IGF-II mRNA was expressed in all skin fibroblasts tested. IGF-II-negative stromal fibroblasts from normal breast, which were plated at low density and allowed to grow to confluence in the presence of MCF-7 breast tumor epithelial cells, demonstrated a marked increase in IGF-II mRNA expression. IGF-II in situ hybridization studies confirmed that IGF-II expression is seen at high levels in stroma of many invasive breast cancers but not normal breast. We conclude that paracrine influences, mediated by soluble factors released by breast tumor epithelium, are able to specifically increase expression of IGF-II in breast stroma, most likely by a process of clonal selection.

Breast↗

Ten-year results of a comparison of conservation with mastectomy in the treatment of stage I and II breast cancer.

BACKGROUND: Breast-conservation therapy for early-stage breast cancer is now an accepted treatment, but there is still controversy about its comparability with mastectomy. Between 1979 and 1987, the National Cancer Institute conducted a randomized, single-institution trial comparing lumpectomy, axillary dissection, and radiation with mastectomy and axillary dissection for stage I and II breast cancer. We update the results of that trial after a median potential follow-up of 10.1 years. METHODS: Two hundred forty-seven patients with clinical stage I and II breast cancer were randomly assigned to undergo either modified radical mastectomy or lumpectomy, axillary dissection, and radiation therapy. The 237 patients who actually underwent randomization have been followed for a median of 10.1 years. The primary end points were overall survival and disease-free survival. RESULTS: At 10 years overall survival was 75 percent for the patients assigned to mastectomy and 77 percent for those assigned to lumpectomy plus radiation (P = 0.89). Disease-free survival at 10 years was 69 percent for the patients assigned to mastectomy and 72 percent for those assigned to lumpectomy plus radiation (P = 0.93). The rate of local regional recurrence at 10 years was 10 percent after mastectomy and 5 percent after lumpectomy plus radiation (P = 0.17) after recurrences successfully treated by mastectomy were censored from the analysis. CONCLUSIONS: In the management of stage I and II breast cancer, breast conservation with lumpectomy and radiation offers results at 10 years that are equivalent to those with mastectomy.

Breast Neoplasms↗

Hormone dependence of breast cancer cells and the effects of tamoxifen and estrogen: 31P NMR studies.

Many breast tumors appear to progress from estrogen-dependent growth to a more malignant phenotype characterized by estrogen-independent growth, antiestrogen resistance, and a high metastatic potential. Utilizing 31P NMR spectroscopy on human breast cancer cells growing in vitro, we have investigated the effects of 17 beta-estradiol and tamoxifen on the metabolic/bioenergetic spectra of a series of human breast cancer cells that vary in their estrogen and antiestrogen responsiveness. A comparison of baseline spectra associates higher levels of phosphodiesters and UDP-glucosides (e.g. UDP-glucose, UDP-N-acetylglucosamine), and lower phosphocholine/glycerylphosphocholine and phosphocholine/phosphoethanolamine ratios, with the acquisition of estrogen-independent growth in estrogen receptor expressing cells. No metabolic changes are clearly associated with the metastatic phenotype. Whilst estrogen treatment produces no consistently significant spectral changes in any of the cell lines, the estrogen-independent and estrogen-responsive MCF7/MIII cell line responds to tamoxifen treatment by significantly increasing all spectral resonances 30%-40% above baseline values. This may reflect a tamoxifen-induced change to a more differentiated or apoptotic phenotype, or an attempt by the cells to reverse the inhibitory effects of the drug. The ability to detect metabolic changes in response to tamoxifen by NMR spectroscopy may provide a novel means to identify those tumors that are responsive to antiestrogen therapy.

Adenocarcinoma↗

Phase I trial of pentosan polysulfate.

Pentosan polysulfate is a semisynthetic pentasaccharide heparinoid derived from beechwood shavings. A total of nineteen patients with various adult solid tumors were treated with three dose levels (15, 22.5, and 30 mg/m2/dose) of subcutaneous pentosan polysulfate every 6 hours. The dose limiting toxicities were thrombocytopenia and elevated transaminases at the dose of 30 mg/m2 every 6 hours. The recommended starting dose for phase II trials is 22.5 mg/m2 given every 6 hours. There was an increase in anticoagulant activity as measured by activated partial thromboplastin time (aPTT) at the dose of 22.5 mg/m2 every 6 hours in most patients. There were no objective responses and three patients had stable disease lasting 16, 19 and 76 weeks.

Adult↗

Regulation of retinoblastoma gene expression in hormone-dependent breast cancer.

Studies have shown an increased risk for breast cancer in the mothers of children suffering from retinoblastoma and osteosarcoma, suggesting a role for the retinoblastoma susceptibility (Rb) gene product in breast cancer. We now show that estradiol decreases the expression of Rb at the level of protein and messenger RNA (mRNA) in estrogen-dependent breast cancer cell lines. Treatment of MCF-7 cells with 10(-9) M estradiol for 48 h resulted in a 70% decrease in the level of Rb protein. Ribonuclease protection assays showed a 50% decrease in the steady state levels of Rb mRNA by 12 h and a 70% decrease in Rb mRNA by 24 h. Treatment with estradiol had no effect on the rate of Rb gene transcription or on Rb mRNA stability, but resulted in an increase in the steady state level of Rb mRNA in the nucleus. The effect of estradiol was inhibited by 10(-7) M 4-hydroxytamoxifen. In the absence of estradiol, the antiestrogens 4-hydroxytamoxifen and ICI 164,384 increased Rb mRNA by 50% over that in estrogen-depleted conditions. Estradiol regulation of Rb mRNA also occurred in other estrogen-dependent breast cancer cell lines. Insulin-like growth factor I, insulin, progestins, and epidermal growth factor had no effect on Rb expression. In summary, these results show that estradiol specifically regulates the expression of the Rb susceptibility gene product in hormone-dependent breast cancer by a posttranscriptional mechanism that occurs in the nucleus. The results from this study suggest that the negative regulation of Rb expression by estradiol, rather than Rb loss or mutation, may play an important role in breast carcinogenesis.

Breast Neoplasms↗

Correlation of TGF-beta 1 expression with medroxyprogesterone acetate responsiveness in mouse mammary adenocarcinomas.

We investigated the expression of transforming growth factors beta 1 and alpha (TGF-beta 1, TGF-alpha) in hormone-responsive (MPA-R) and unresponsive (MPA-U) tumor lines obtained from medroxyprogesterone acetate (MPA)-induced mammary adenocarcinomas in BALB/c mice. The tumors were transplanted into MPA-treated and untreated mice. TGF-beta 1 gene expression was observed in the MPA-R lines growing in untreated animals, but not in MPA-treated mice. TGF-beta 1 mRNA was not detected in the MPA-U tumor lines growing in either MPA-treated or untreated animals. In MPA-R lines the levels of TGF-beta 1 expression were inversely correlated to growth rate. High-affinity TGF-beta 1 receptors were present in the MPA-R tumors. These results suggest that one of the mechanisms by which MPA exerts its proliferative effect on MPA-R tumor lines is inhibition of the expression of TGF-beta 1. Thus, the lack of expression of TGF-beta 1 in MPA-U tumors may be related to the acquisition of autonomous growth.

Adenocarcinoma↗

MDA-MB-134 breast carcinoma cells overexpress fibroblast growth factor (FGF) receptors and are growth-inhibited by FGF ligands.

Overexpression of some transmembrane tyrosine kinase growth factor receptors in breast and other tumors has been found to correlate with poor prognosis. Following the cloning of the first two members of the fibroblast growth factor family of receptors (FGFRs), amplification of these receptors in breast carcinomas was found. We have examined 23 breast carcinoma cell lines to determine the extent of expression of mRNA for fgfrs 1 through 4. All breast carcinoma cell lines examined expressed mRNA for at least one fgfr and several expressed high mRNA levels for a particular receptor. MDA-MB-134, an estrogen receptor-positive cell line, expressed very high levels of mRNA for fgfr-1 and elevated levels of mRNA for fgfr-4. This cell line was found to have an amplified fgfr-1 gene, but the gene for fgfr-4 was not amplified. MDA-MB-453 cells were found to express high levels of mRNA for fgfr-4 without amplification of the gene. MDA-MB-134 cells were examined for their response to FGF ligands. Tyrosine phosphorylation of a M(r) 150,000 protein resulted when MDA-MB-134 cells were treated with FGF-1 or FGF-2, implying the presence of a functional FGFR-1. MDA-MB-134 cells were growth-inhibited by picomolar concentrations of FGF-1 or FGF-2 in a dose-dependent manner under both anchorage-independent and anchorage-dependent conditions. These results may provide insight into the consequences of FGFR overexpression in breast tumors and the development of treatment modalities which use manipulation of growth factor responses.

Antibodies↗

Psychosocial factors in the development and progression of breast cancer.

The factors responsible for the genesis of breast cancer remain unclear. Emerging, although controversial, evidence suggests that factors related to life-style, such as dietary fat or alcohol intake, or exposure to various forms of stressors, are associated with mammary tumorigenesis. The possible role of life-style factors in breast cancer is important in light of the fact that mortality to this disease is increasing in most countries and that development of curative therapies for breast cancer has not been forthcoming. Thus, determining the role of life-style factors in the onset and progression of breast cancer, particularly among individuals genetically vulnerable to breast cancer or women with breast cancer in remission, is critical to prevent this disease. We will review the three main hypotheses which have been suggested to link psychosocial factors to the etiology of cancer, emphasizing data obtained through animal models. Interpretation of the existing data suggests that the number of stressful life-events does not predict vulnerability to develop breast cancer or survival from it; a certain level of stress appears to protect from malignancies. The crucial factor affecting tumor growth is the interaction among stress, an individual's personality, and available psychosocial support, and the effect of this interaction on an individual's ability to cope with stress. In addition, other risk factors for breast cancer known to be closely associated with psychosocial factors, namely dietary fat and alcohol consumption, may interact with the effects of psychosocial factors on breast cancer.

Alcohol Drinking↗

Perinatal factors increase breast cancer risk.

Emerging evidence suggests that breast cancer may originate during early life. In particular, offspring of mothers who during pregnancy exhibited behaviors that are associated with increased incidence of breast cancer, may be at risk. These behaviors include intake of high fat diet or alcohol, or stressful life style. We have found that neonatal exposure to handling that leads to improved ability to cope with stress, reduces 7,12-dimethylbenz(a)anthracene (DMBA)-induced mammary tumors in rats. Further, our results indicate that maternal exposure to high fat diet increases the incidence of DMBA-induced mammary tumors in female offspring. High fat diet also increases serum 17 beta-estradiol (E2) levels in pregnant animals. These results support the hypothesis that in utero concentrations of estrogens play a critical role in the vulnerability to develop breast cancer. The mechanism of estrogen action might be related to its effect on the induction of epithelial hyperplasia and altered breast differentiation. These events then increase the rate of genetic/epigenetic changes that increase the possibility of neoplastic transformation. Increased pregnancy estrogens may also lead to behavioral alterations in the offspring. This could explain the proposed association between certain behavioral patterns and increased tumorigenity. Our results in transgenic mice overexpressing transforming growth factor alpha (TGF alpha) are in accordance with this interpretation. The male TGF alpha mice exhibit elevated serum E2 levels, impaired ability to cope with stress, increased voluntary alcohol intake and high incidence of spontaneous hepatocellular tumors. These findings indicate that animal models offer a unique opportunity to investigate the role of timing of risk behaviors on breast cancer. They are also useful in the attempts to understand the mechanism of early estrogen action on mammary tumorigenesis.

9,10-Dimethyl-1,2-benzanthracene↗

Antiestrogen resistance in ER positive breast cancer cells.

Acquisition of the antiestrogen resistance by breast cancer cells in vivo may result from a variety of mechanisms. The main pathway appears to involve loss of estrogen receptor (ER) expression or selection for ER negative cells among heterogenous population of tumor cells. However, clinical data suggest that, in about 30% of the cases, antiestrogen resistance arises even in the presence of estrogen receptors. Postulated mechanisms leading to the latter phenotype include selection for variant receptor forms during treatment, development of novel metabolic pathways for the drug, loss of nuclear co-factors, or activation of signal transduction pathway that cross activate ER signals. We have used an in vitro experimental system utilizing LY-2 cell line, an ER positive and antiestrogen resistant MCF-7 cell variant, to study the mechanism of antiestrogen resistance in the presence of functional ER. Result from a complementation experiment suggests that LY-2 phenotype is a recessive trait. Cloning of the genetic defect in the LY-2 cells would provide further insight for the mechanism of antiestrogen resistance in ER positive breast cancer cells.

Adenocarcinoma↗

Oncogene-induced basement membrane invasiveness in human mammary epithelial cells.

Expression of the intermediate filament protein vimentin, and loss of the cellular adhesion protein uvomorulin (E-cadherin) have been associated with increased invasiveness of established human breast cancer cell lines in vitro and in vivo. In the current study, we have further examined these relationships in oncogenically transformed human mammary epithelial cells. A normal human mammary epithelial strain, termed 184, was previously immortalized with benzo[a]pyrene, and two distinct sublines were derived (A1N4 and 184B5). These sublines were infected with retroviral vectors containing a single or two oncogenes of the nuclear, cytoplasmic, and plasma membrane-associated type (v-rasH, v-rasKi, v-mos, SV40T and c-myc). All infectants have been previously shown to exhibit some aspects of phenotypic transformation. In the current study, cellular invasiveness was determined in vitro using Matrigel, a reconstituted basement membrane extract. Lineage-specific differences were observed with respect to low constitutive invasiveness and invasive changes after infection with ras, despite similar ras-induced transformation of each line. Major effects on cellular invasiveness were observed after infection of the cells with two different oncogenes (v-rasH + SV40T and v-rasH + v-mos). In contrast, the effects of single oncogenes were only modest or negligible. All oncogenic infectants demonstrated increased attachment to laminin, but altered secretion of the 72 kDa and 92 kDa gelatinases was not associated with any aspect of malignant progression. Each of the two highly invasive double oncogene transformants were vimentin-positive and uvomorulin-negative, a phenotype indicative of the epithelial-mesenchymal transition (EMT) previously associated with invasiveness of established human breast cancer cell lines. Weakly invasive untransformed mammary epithelial cells in this study were positive for both vimentin and uvomorulin, suggesting that uvomorulin may over-ride the otherwise vimentin-associated invasiveness.

Animals↗