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Estramustine sensitizes human glioblastoma cells to irradiation.

Estramustine is an estradiol-based antimicrotubule agent that accumulates in malignant glioma cells, resulting in a concentration-dependent inhibition of proliferation. This agent has been shown to synchronize human glioma cells at G2-M consistent with its known effects on the mitotic spindle and potentially could be used as a radiation enhancer. We determined the effects of estramustine on the cell cycle of glioblastoma cells by flow cytometry. These findings were compared with clonogenic survival in cells pretreated with varying concentrations of estramustine prior to irradiation. These experiments indicated that 24 h treatment with 1 microM estramustine had no effect on the percentage of G2-M cells and did not enhance the cytotoxic effects of radiation while 10 microM estramustine increased the G2-M fraction by 100% associated with a potentiation factor as high as 8.5 and a relative radiation sensitivity at 70% cytotoxicity of 5.2 compared with 15.4 for control cells. Estramustine can be administered p.o. on a daily schedule with minimal systemic toxicity. These data suggest that estramustine may be an effective radiation enhancer for glioblastoma.

Brain Neoplasms↗

[Studies on estramustine-binding protein in the human prostate].

In the present study, size exclusion HPLC was used to analyse the properties of Estramustine-binding protein (EMBP) in the cytosol of human benign prostatic hypertrophy (BPH). The typical size exclusion HPLC separation profile of 3H-Estramustine-labelled cytosol of BPH showed four radioactive peaks that corresponded to the V0, 250K, 68K and 45K protein regions. The specific binding protein for Estramustine is contained mainly in the 250K protein region and in part in the V0 region. In the presence of sodium molybdate, the specific Estramustine binding to a 250K protein was increased to a level which was about 2.5 times as much as the value in the absence of sodium molybdate. The specific Estramustine binding to a 250K protein under the condition of no DCC treatment and the addition of sodium molybdate was 600% of the value obtained under the condition of DCC treatment and no addition of sodium molybdate. These results suggested that sodium molybdate stabilized the specific Estramustine-binding activity to a 250K protein and that specific Estramustine binding to a 250K protein seemed to be weaker than the binding of androgen to androgen receptor.

Carrier Proteins↗

Estramustine binding protein (EMBP) in rat R3327 Dunning tumors: partial characterization and effect of hormonal withdrawal, hormonal replacement, and cytotoxic treatment on its expression.

Expression of estramustine-binding protein (EMBP) was determined in eight variants of the Dunning R3327 rat prostate adenocarcinoma. This secretory protein was previously isolated from the normal rat prostate and binds estramustine and estromustine, the metabolites exerting anti-mitotic and anti-proliferative activity of the anticancer agent estramustine phosphate (EstracytR). EMBP was found in relatively high amounts only in the androgen-responsive G and H tumors from intact hosts, whereas low (AT-1, HI-F) or nondetectable levels (HI-S, AT-3, MAT-LyLu, MAT-Lu) were obtained in the androgen-independent tumors. Castration decreased EMBP expression in both G and H tumors, as did estradiol and estramustine when given separately to intact rats. Supplementation of castrates with exogenous androgen stimulated EMBP expression above the pre-castration level and was further enhanced when combined with estradiol and in particular estramustine. Partial physicochemical characterization of EMBP in G and H tumors was performed by using ligand-based and immunoblotting techniques. [3H]Estromustine was bound to cytosols and salt extracts from tumors with the same affinity and displayed similar surface-charge distribution, sedimentation behavior, and subunit composition as found for ventral and dorsolateral prostatic tissue from tumor-bearing rats. This study indicates that the synthesis of EMBP is under androgenic control and that its expression may be correlated to androgen responsiveness, metastatic potential, and androgen receptor content but not to growth rate and morphology of the tumors. EMBP may therefore provide a mechanism for concentration of cytotoxic activity at the target site in EMBP-positive tumors and help in the evaluation of antitumor effects obtained when administering estramustine.

Adenocarcinoma↗

Evidence for a non-estrogenic cytostatic effect of estramustine on human prostatic carcinoma cells in vivo.

Estramustine is one of the main metabolites of estramustine phosphate (EstracytR), a drug used in the treatment of advanced prostatic cancer. In the present study the hormone independent human prostatic carcinoma cell line DU 145 implanted subcutaneously in nude mice (NMRI) was used to investigate the mode of action of estramustine in vivo. Metaphase arrest was found in mice treated with estramustine intraperitoneally, 200 and 400 micrograms daily for 2 weeks, 5 days a week. A significant dose dependent decrease in the number of anaphase figures was found. A 7 to 8 fold increase in the number of abnormal metaphases, i.e., highly contracted and unaligned chromosomes, was found. Uptake and retention of 3H-estramustine was found in tumour tissue. No increase in the mitotic index or the number of abnormal metaphases was found in animals treated with polyestradiol phosphate (EstradurinR). This is the first time evidence has been presented demonstrating the anti-mitotic effect of estramustine in vivo.

Animals↗

Hormone-independent, non-alkylating mechanism of cytotoxicity for estramustine.

Over two decades, experience with estramustine has provided limited data which support an estrogenic mechanism of action and no data which indicate the nitrogen mustard involvement in the cytotoxic properties of the drug. Consideration of the carbamate-ester portion of estramustine supports the pharmacokinetic evidence that estramustine has a long half life since enzymatic hydrolysis of the carbamate is an uncommon event. Using a variety of immunocytochemical and cellular morphology procedures, estramustine per se has been found to express anti-cytoskeletal properties through non-covalent binding to microtubule associated proteins (MAP's). In both fish erythrophores and in dividing human prostatic carcinoma cells, estramustine exerts an antimicrotubule effect at micromolar concentrations. Thus, estramustine possesses unique pharmacology and protein binding specificity. As such, it should not be classified as an alkylating agent. The estrogenic effects, while possibly of relevance to clinical administration, are not the primary mechanism by which the drug exerts cytotoxicity.

Alkylation↗

Clinical evaluation of flutamide and estramustine as initial treatment of metastatic carcinoma of prostate.

The efficacy and side effects of flutamide were compared with estramustine in patients with advanced prostatic carcinoma. Thirty patients with metastatic cancers but with no serious cardiovascular (CV) conditions were randomly assigned to receive treatment either with flutamide (250 mg X 3) or with estramustine (280 mg X 2). Clinical examination, bone scan, laboratory measurements, including coagulation studies were performed prior to randomization, every three months during year one, and at six-month intervals thereafter. The two groups were comparable with respect to age and tumor characteristics. However, more patients presented with skeletal pain among those later treated with flutamide. During an observation period of between one and two and one-half years, flutamide was discontinued in 1 case (7%) because of icterus, and estramustine in 3 cases (20%) because of CV complications. Of the remaining 14 flutamide-treated patients, 13 responded initially. Eleven of them relapsed, and 5 died of cancer. In the corresponding group of 12 estramustine-treated patients, there were 11 primary responders. Of these, only 2 relapsed and died as did the only nonresponder. The difference between the two groups with regard to relapse is significant (P less than 0.01), but not with regard to mortality. All estramustine-treated patients lost their libido, whereas only 20 per cent of the patients treated with flutamide did so. In the present limited material there was an initial favorable response to flutamide without signs of CV complications and with maintained libido in most cases. However, due to significantly increased risk for relapse compared with estramustine, flutamide cannot be recommended as single therapy except in cases where estrogens are contraindicated or when interference with libido and potency is unacceptable.

Adenocarcinoma↗

DNA fragmentation induced by the antimitotic drug estramustine in malignant rat glioma but not in normal brain--suggesting an apoptotic cell death.

Estramustine, a combination of 17 beta-oestradiol and nor-nitrogen mustard, has been shown to be metabolised and to induce specific antiproliferative effects in malignant glioma, including arrest of glioma cells in the G2/M phase of the cell cycle, damage to cell membranes and DNA and induction of free oxygen radicals. To evaluate further the effects of estramustine, an in vivo rat glioma model using inbred BD-IX rats and the BT4C cell line was set up. In order to detect cells with fragmented DNA, tumour and brain specimens were, following fixation for histological examination, processed for in situ end labelling (ISEL) with biotin-labelled nucleotides. Fresh tissue fragments were also used for DNA integrity analysis on agarose gels. It was demonstrated that estramustine induced clusters of ISEL-positive cells and a pronounced typical fragmentation of DNA 0.5-8 h after treatment. In tumours examined 24 or 94 h after estramustine treatment, and in untreated tumours, only occasional single ISEL-positive cells were scattered in the tumour. DNA from normal brain tissue did not display any visible sign of fragmentation. These changes are indicative of programmed cell death induced by estramustine in glioma cells but not in normal brain tissue. Further studies are, however, needed to establish in detail the mechanism of cell death following treatment with the antimitotic drug estramustine.

Animals↗

Effects of radiotherapy and estramustine on the microvasculature in malignant glioma.

Tumour angiogenesis is essential for progression of solid tumours and constitutes an interesting target for therapy. However, impaired tumour blood supply may also be an important obstacle for treatment by radiotherapy and chemotherapy. Estramustine has been shown to increase tumour blood flow and potentiate the effect of radiotherapy in experimental glioma. This study investigated the effects of fractionated radiotherapy and estramustine on angiogenesis in malignant glioma. The intracerebral BT4C rat glioma model was used and the animals were given whole brain radiotherapy 4 Gy x 5 days alone or in combination with estramustine 20 mg kg(-1) i.p. daily. Tumour microvascular density (MVD) was assessed by manual and computerized morphometrical analysis. Expression of vascular endothelial growth factor (VEGF) was studied by in situ hybridization. Radiotherapy decreased MVD to 157 vessels per mm2 compared to 217 vessels per mm2 in controls. Estramustine counteracted this anti-angiogenic effect and potentiated the anti-tumoural effect of radiotherapy. In addition, vessel size increased after estramustine treatment. Five days after completion of radiotherapy the expression of VEGF was increased in the centre of the tumours. In conclusion, fractionated radiotherapy decreases microvascular density in experimental malignant glioma. This effect was abolished by estramustine. The anti-vascular effect of irradiation is important to recognize when combining radiotherapy with cytotoxic drugs.

Animals↗

Estramustine binds MAP-2 to inhibit microtubule assembly in vitro.

We have investigated the ability of estramustine to bind to rat brain microtubule-associated proteins (MAPs) and purified MAP-2 in vitro. [3H]estramustine's relative affinity for tubulin and MAPs was assessed by gel filtration chromatography, immunoprecipitation and binding assays. Scatchard analysis demonstrated a specific affinity of the drug for MAP-2. Calculations from kinetic parameters and non-linear regression analysis gave a Kd of 15 microM, and a Bmax of 3.4 x 10(-7)M ml-1. Extrapolation of this value suggested that each MAP-2 molecule binds approximately 20 molecules of estramustine. Microtubule assembly studies and SDS-polyacrylamide gel electrophoresis revealed that at 20-60 microM levels, estramustine inhibited the association of MAPs with taxol microtubules. Turbidity (A350) studies further demonstrated that 20-60 microM-estramustine inhibited MAP-2-driven tubulin assembly and produced microtubule disassembly. Electron-microscopic studies confirmed the centrifugation and turbidity results. The data demonstrated that estramustine can bind MAPs and MAP-2 specifically, thereby inhibiting microtubule assembly.

Animals↗

Pharmacokinetics and pharmacodynamics of estramustine phosphate.

Estramustine phosphate (estramustine phosphate sodium), a carbamate ester combining 17 beta-estradiol and nor-nitrogen mustard, is a cytotoxic drug used in the treatment of advanced prostatic carcinoma. Because of the radiosensitising effect of this drug there has been a recent increase in interest concerning estramustine phosphate and its clinical use. It has also been found that the early recommendations of drug administration together with food or milk were inappropriate, since calcium containing food and antacids hamper drug uptake. This may have obscured results from earlier clinical studies with estramustine phosphate. Estramustine phosphate is currently being re-evaluated for the treatment of other tumours such as glioma and mammary carcinoma. This review summarises the present relatively limited knowledge concerning the pharmacokinetic and pharmacodynamic aspects of estramustine phosphate and its metabolites.

Animals↗

Blocking of collagenase secretion by estramustine during in vitro tumor cell invasion.

The effects of the antitumorigenic drug estramustine on tumor cell membrane penetration (invasion) were investigated in vitro by utilizing a synthetic basement membrane system (a modified Boyden chamber). Tumor cells were plated on a "partition barrier," consisting of a porous filter (8-micron pores) which was coated with a reconstituted basement membrane matrix (Matrigel), and induced to migrate across the barrier with conditioned medium obtained from 9DU 145 human prostatic tumor cells (passage 9). Quantitative radiolabeling studies demonstrated that specially isolated lines (isolated by several passages through the Matrigel) of DU 145 cells, A2058 melanoma, and B16-F10 melanoma cells were highly invasive such that 15 to 20% migrated across a 1-mm-thick Matrigel layer within 5 h at 37 degrees C. NIH-3T3 cells, mouse fibroblasts, and 20DU 145 cells (passage 20) exhibited little or no membrane invasive behavior. Micromolar concentrations of estramustine (30 to 120 microM) inhibited invasion by the invasive cell lines in a dosage-dependent fashion. Quantitative enzymatic assays and radioimmune assays demonstrated that estramustine inhibited membrane invasion by blocking type IV collagenase secretion. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis and Western blots confirmed that 30 to 60 microM estramustine blocked secretion of a Mr 105,000 collagenase protein. Indirect studies showed that a collagenase antibody raised against the Mr 105,000 protein and inhibitors of proteinase activity, including a metalloproteinase inhibitor, and 1,10-phenanthroline, blocked invasion. Because the antibodies inhibited type IV collagenase digestion of 3H-mouse type IV collagen, and invasion simultaneously, it is proposed that collagenolytic activity is involved in invasion. These data demonstrate that estramustine blocks proteinase secretion, and suggest that estramustine may be a useful therapeutic drug for the prevention of metastasis.

Cell Division↗

Estrogen receptor and binding site for estramustine in metastatic malignant melanoma.

Enzyme immuno assay (EIA) of estrogen receptor (ER) has confirmed the results of earlier investigations using steroid binding techniques, namely that ER is present at very low concentrations in samples from metastatic melanoma. Thirty-four of 61 samples (56%) were ER positive with EIA. The corresponding figures using isoelectric focusing (IF) for the steroid binding assay were 16 of these 61 samples (26%). The difference between the methods may be due to difficulties in the interpretation of analytical results for IF at low ER concentration levels or to interference from other 3H-estradiol binding components. Estramustine binding site (EMBS) has been found in samples from 15 of 77 patients (20%) with IF in polyacrylamide gels. Estramustine is, together with estramustine, the cytotoxic metabolite of estramustine phosphate (Estracyt). In analogy to the previously suggested therapeutic significance of estramustine binding protein in the treatment of prostatic cancer, the clinical importance of estramustine phosphate should also be studied in metastatic malignant melanoma in correlation with EMBS status.

Adolescent↗

Partial characterization and "quantitation" of a human prostatic estramustine-binding protein.

The [3H]estramustine-binding macromolecule in human prostate was partially characterized using a number of chromatographic procedures. Although human estramustine-binding protein (HEMBP) had a marked tendency to aggregate in several systems, a molecular weight of about 54,000 was determined by gel filtration on Sephacryl S-200 Superfine and high-performance liquid chromatography. A sedimentation-coefficient of about 3.6S was obtained for HEMBP when analyzed by sucrose density gradient centrifugation. Isoelectric focusing in polyacrylamide gels indicated an isoelectric point of 4.7 to 4.8, which was in agreement with the elution position of HEMBP following chromatofocusing on Polybuffer Exchanger 94. Furthermore, HEMBP was eluted from diethylaminoethyl-Sepharose with 0.23 M KCl, was retained by concanavalin A-Sepharose (indicating that HEMBP is a glycoprotein), but did not interact with Affi-Gel Blue. Special efforts were concentrated on establishing that HEMBP was a species distinct from human serum albumin. Separation between the [3H]estramustine-labeled HEMBP and the [3H]estramustine-human serum albumin complex was obtained both on sucrose density gradients by chromatography on Affi-Gel Blue, by chromatofocusing, by gel filtration, by isoelectric focusing, and on concanavalin A-Sepharose by affinity chromatography. Twenty-two of 27 human benign hyperplastic prostate cytosol samples were found to contain protein immunochemically similar to estramustine-binding protein (EMBP) purified from rat ventral prostate as determined by the EMBP radioimmunoassay method. Concentrations from 0.2 to 139.6 ng EMBP per mg of total cytosolic protein (mean, 19.3) were determined. Furthermore, four of seven prostatic cancer specimens as well as two of two normal prostatic specimens were also found to contain rat EMBP-immunoreactive material. The unequivocal demonstration of the presence of a HEMBP is of great potential interest in consideration of estramustine phosphate (Estracyt) therapy against prostatic carcinoma. It is not inconceivable that the concentration of HEMBP in the carcinomatous tissue will be of significance in determining the drug uptake in the malignant tissue.

Animals↗

Phase I study of paclitaxel and estramustine: preliminary activity in hormone-refractory prostate cancer.

Estramustine phosphate is a unique antimitotic agent that binds to tubulin and microtubule-associated proteins. Preclinically, estramustine combined with other microtubule inhibitors, like vinblastine or paclitaxel (Taxol; Bristol-Myers Squibb Company, Princeton, NJ), produced additive or greater antimitotic and cytotoxic effects. Clinically, the estramustine/vinblastine combination has significant activity in hormone-refractory prostate cancer. We have begun a phase I study of paclitaxel by 96-hour continuous infusion every 3 weeks combined with daily oral estramustine (600 mg/m2). Eighteen patients with refractory solid tumors have received paclitaxel doses ranging from 80 to 140 mg/m2. Grade 3 or 4 granulocytopenia occurred in one of seven and two of four patients treated at the 120- and 140-mg/m2 dose levels, respectively. The latter two patients experienced grade 3 mucositis and had mean plasma paclitaxel levels exceeding 0.1 mumol/L. Other toxicities, principally nausea and hepatic function abnormalities, have been mild. The apparent steady-state concentrations of paclitaxel 100 and 120 mg/m2 administered with estramustine are similar to those reported for single-agent paclitaxel administered as a 96-hour infusion at doses of 100 and 120 mg/m2. In contrast, at the 140 mg/m2 dose level, paclitaxel concentrations increased throughout the infusion, and steady state was not reached in three of the four patients treated. Objective responses have been observed in two of three patients with adenocarcinoma of the esophagus and in two patients with hormone-resistant prostate cancer and measurable soft tissue metastases. Two additional patients with prostate cancer have been treated with the estramustine/paclitaxel combination, one achieving a major response and the other stable disease. The recommended phase II dose for 96-hour infusional paclitaxel with daily oral estramustine is at least 120 mg/m2. Studies to determine the effect of estramustine on paclitaxel pharmacokinetics are continuing. The antitumor activity observed merits phase II studies of this combination in hormone-resistant prostate cancer and other malignancies.

Antineoplastic Combined Chemotherapy Protocols↗

Stoichiometry of estramustine phosphate binding to MAP2 measured by the disassembly of chick brain MAP2:tubulin microtubules.

The concentration of estramustine phosphate required to inhibit the assembly or to induce the disassembly of chick brain MAP2:tubulin microtubules is markedly dependent upon the microtubule protein concentration. Analysis of this relationship shows that estramustine phosphate and tubulin compete for common MAP2 sites, that MAP2 can bind 5-6 moles.mole-1 estramustine phosphate, and that the Kd of these sites is congruent to 20 microM estramustine phosphate. It is proposed that two molecules of estramustine phosphate interact with each of the three tubulin-binding sites of MAP2 and inhibit the MAP2:tubulin interaction by neutralising two highly conserved basic residues.

Amino Acid Sequence↗

A phase II trial of docetaxel and estramustine in patients with refractory metastatic breast carcinoma.

BACKGROUND: The similarity between the mechanism of action between docetaxel and estramustine generated the hypothesis of synergistic antimicrotubule effects and cytotoxicity when the two agents are combined. In addition, it has been demonstrated that estramustine binds P-glycoprotein in vitro and, thus, may prevent the efflux of taxanes in tumors that over-express P-glycoprotein. To further evaluate the combinations clinical efficacy and safety, a trial was performed in heavily pretreated patients with metastatic breast carcinoma (MBC). METHODS: Thirty-six patients with MBC were treated with estramustine 900 mg/m(2) per day divided into 3 doses given on Days 1-3 and docetaxel 70 mg/m(2) given by intravenous administration over 1 hour on Day 3 after the first dose of estramustine, every 21 days. Patients may have received any number of prior chemotherapy regimens for MBC. RESULTS: Nine partial responses were observed in 31 assessable patients, for an objective response rate of 29% (95% confidence interval, 14-48%). The median progression free survival was 4 months (range, 1-41 months), and the median overall survival was 17 months (range, 2-45 months). Severe toxicities (Grade 3 or 4) were neutropenia, hypophosphatemia, and thrombosis. Seventy-five percent of patients experienced either an improvement or no change in quality of life. CONCLUSIONS: The combination of docetaxel and estramustine produced responses in heavily pretreated women with MBC while maintaining quality of life.

Adult↗

Accumulation of estramustine and estromustine in adipose tissue of rats and humans.

The tissue distribution of estramustine and estromustine, two cytotoxic lipophilic metabolites of estramustine phosphate (Estracyt, EMP) was studied in rats and humans. A single dose of [3H]-estramustine was given i.v. to groups of rats. At 24 h after administration, the concentration of radioactivity in fat was about 20, 12, and 2 times that in muscle, plasma, and liver, respectively. Liquid chromatography verified that the radioactivity represented estramustine and estromustine. The clinical relevance of these results was investigated in pancreas cancer patients treated with a single oral dose of Estracyt at 12-16 h before surgery. As judged by gas chromatography, the concentration of estromustine, which is the main metabolite in man, was about 13 times higher in fat than in plasma and was also higher in adipose tissue than in muscle and liver. After 5 days of Estracyt treatment, the adipose uptake of estromustine was even higher, namely, about 40 times that in plasma and 8 times that in muscle and liver. Thus, our results demonstrate that estramustine and estromustine are stored in adipose tissue after the administration of EMP; this is important for the pharmacokinetics and, consequently for the therapeutic effects of Estracyt.

Adipose Tissue↗

The hydrolysis of estramustine phosphate; in vitro studies.

The hydrolysis of estramustine phosphate by enzymes of blood, liver, intestines and prostate of man, dog and rat was studied by using specific analytical methods for the parent compound and some of its metabolites. Estramustine phosphate was stable in blood and plasma of different species but rapidly dephosphorylated to estramustine by liver, intestinal and prostatic enzymes. The prostate was the most active tissue. The ester bond by which nornitrogen mustard is linked to estradiol-17-phosphate was slowly cleaved by enzymes from the liver and prostate of the rat, dog and man. The dog tissues were more effective than those of the rat and man. Intestinal enzymes also exhibited the ability to hydrolyze the carbamic ester, but to a greater extent in the rat than in the dog. It is concluded that, with regard to the metabolism of estramustine, the rat is more similar to man than is the dog. Possible clinical implications of the biotransformation of estramustine phosphate are discussed.

Animals↗