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The transfer of estrone glucuronide to bile in an isolated perfused rat liver system.

An isolated rat liver perfusion system has been utilized in a study of the biliary excretion of estrone glucuronide. The estrogen was initially shown to be excreted without prior metabolism. Disappearance from the medium was rapid and biliary concentrations exceeded that in the medium by more than a thousand-fold. Disappearance rates were decreased when medium estrone glucuronide concentrations exceeded 0.29 mM. Inhibition by other steroidal conjugates, testosterone glucuronide, 2-methoxyestrone (3-hydroxy-2-methoxy-estra-1,3,5(10)-trien-17-one glucuronide and 2-hydroxyestrone (2,3-dihydroxyestra-1,3,5(10)-trien-17-one) glutathione, was also demonstrated. Phenolphthalein glucuronide, at 10 times the molar concentration of estrone glucuronide, did not affect the medium clearance of the latter compound. These findings indicate the possibility of utilizing this system for further studies of possible interactions by other organic compounds for excretion via the biliary route.

Animals↗

The metabolism of estrone and estradiol-17beta and their 3-sulfates by female guinea pig liver microsomes.

The metabolism, by female guinea pig liver microsomes of estrogen 3-sulfates (estrone-3-sulfate and 17beta-estradiol-3-sulfate) was compared to that of the unconjugated estrogens, estrone and estradiol-17beta. Metabolites identified indicated that 16beta-hydroxylated products (16beta judrpxuestrpme amd 16 epiestriol) arose mainly from the free estrogens while 16alpha-hydroxy steroid sulfates (16alpha hydroxyestrone-3-sulfate and estriol-3-sulfates and estriol-3-sulfate) were predominantly formed from the sulfated estrogens. These results show that the sulfate moiety at position 3 of the steroids directs 16-hydroxylation from the beta to the alpha configuration.

Animals↗

Novel and regiospecific synthesis of 2-amino estrogens via Zincke nitration.

An efficient synthesis of 2-aminoestrone (14), 2 aminoestradiol (15), 2-amino-16 alpha-hydroxyestrone (16) and 2-aminoestriol (17) is described. 2,4-Dibromo estrogens 1 - 4 were regiospecifically converted to the corresponding 2-nitro-4-bromo derivatives 5 - 8 in quantitative yields, with Zincke nitration using sodium nitrite. Catalytic hydrogenation of the 2-nitro-4-bromides 5 - 8 over palladium-on-charcoal gave directly the desired 2-amino estrogens 14 - 17 in high yields. The 2-amino compounds 15 and 17 were also obtained by the reduction of the corresponding 2-nitro-4-bromides 6 and 8 with sodium borohydride in the presence of palladium chloride.

Amines↗

Influence of chemopreventive agents on estradiol metabolism and mammary preneoplasia in the C3H mouse.

The C3H strain of mouse has a high incidence of murine mammary tumor virus-induced mammary tumors, and tumorigenesis progresses via the intermediate formation of the preneoplastic, hyperplastic alveolar nodules (HANs). The C3H mouse also exhibits an elevation in 16 alpha-hydroxylation of estradiol which remains unaltered in relation to the age or presence of tumor, but which is detectable well before the emergence of overt mammary cancer. This metabolic pathway leads to the formation of 16 alpha-hydroxyestrone (16 alpha-OHE1), a putative promoter of mammary cancer. The present study examines the effect of two prototype chemopreventive agents, tamoxifen (TAM) and N-(4-hydroxyphenyl)retinamide (HPR), on 16 alpha-hydroxylation of estradiol and on the growth of HANs. Treatment with TAM, HPR, or a combination of TAM and HPR for 4 weeks in 6- to 8-week-old C3H mice resulted in a consistent elevation in the 16 alpha-hydroxylation pathway of estradiol metabolism relative to the placebo control group (20.50% +/- 2.35%, 21.46% +/- 1.49%, 18.00% +/- 1.75%, and 12.64% +/- 1.45% SD, respectively) and in a significant decrease in the mean frequency of HANs per mammary gland (1.4, 2.1, 0.0, and 5.8, respectively). Mice without any experimental manipulation exhibited an age-dependent progressive increase in HAN frequency from 1.5 per gland at 4 weeks of age to 12.1 per gland at 24 weeks of age. Administration of TAM, HPR, or a combination of TAM and HPR up to 22 weeks of age resulted in a continued suppression of HAN frequency, and the two agents in combination exerted an additive effect on the suppression of HAN development.(ABSTRACT TRUNCATED AT 250 WORDS)

Aging↗

Effects of exogenous thyroxine on C-2 and C-16 alpha hydroxylations of estradiol in humans.

Thyroid dysfunction in humans is known to alter the excretory pattern of estrogen metabolites, suggesting that thyroid hormone directly influences the oxidative metabolism of estradiol. We examined the extent to which a brief period of hyperthyroidism specifically affected estradiol hydroxylation at C-2 and C-16 alpha, the two primary and competing sites of estrogen oxidation, using an in vivo radiometric assay in healthy male volunteers. Hydroxylation at C-2 was increased by a 2-week course of thyroxine (4.3 micrograms/kg/d) from 29.9% +/- 2.6% to 35.9% +/- 3.1% (P = 0.04), while 16 alpha-hydroxylation was unchanged (10.3% +/- 0.8% versus 9.3% +/- 0.5%). The greater extent of oxidation at C-2 was evidenced by a twofold increase in the urinary excretion of 2-hydroxyestrone (2.88 +/- 0.32 versus 5.30 +/- 0.85 micrograms/g creatinine), while the excreted products of 16 alpha-hydroxylation were unchanged. At the same time, significant reductions in total cholesterol (173.8 +/- 7.9 versus 139.4 +/- 8.9 mg/dl), low-density lipoprotein cholesterol (110.0 +/- 5.3 versus 83.8 +/- 7.7 mg/dl), and apolipoprotein B (68.2 +/- 3.3 versus 53.1 +/- 3.6 mg/dl) were observed. Serum levels of estrone, estradiol, sex hormone-binding globulin, high-density lipoprotein cholesterol, very low-density lipoprotein cholesterol, triglycerides, and apolipoprotein A-I were not significantly affected. This study adds to the growing evidence that catechol estrogen production in humans is more readily regulated than 16 alpha-hydroxylation, which is relatively refractory to treatment.

Adult↗

Biotransformation of estradiol by explant culture of human mammary tissue.

In vivo experiments on strains of mice that differ in the risk of developing mammary cancer have demonstrated a correlation between the extent of 16 alpha-hydroxylation of estradiol and incidence of mammary cancer. The ability of human mammary terminal duct lobular unit (TDLU), the site of neoplastic transformation, to metabolize estradiol or to accumulate estradiol metabolites has not been unequivocally established. Using a newly developed human mammary TDLU explant culture system and a radiometric assay for estradiol metabolism, we compared the site-specific metabolism of estradiol by the 17-oxidation, 2-hydroxylation, and 16 alpha-hydroxylation pathways in noninvolved human mammary tissue. The relative extent of estradiol 16 alpha-hydroxylation was found to be increased in TDLU from patients in the luteal phase of the menstrual cycle in relation to either those from patients in the follicular phase or from postmenopausal subjects. This study demonstrates that TDLU can metabolize estradiol extrahepatically and that 16 alpha-hydroxylation in the target tissue is dependent on the phase of the menstrual cycle. Furthermore, the specific, risk-related increase in 16 alpha-hydroxylation suggests that intrinsic metabolic ability of the target tissue leading to the formation of 16 alpha-hydroxyestrone from estradiol may be a determinant in, or a marker for, the relative risk of developing mammary cancer.

Aryl Hydrocarbon Hydroxylases↗

Synthesis of 15 alpha-hydroxyestrogen 15-N-acetylglucosaminides.

The synthesis of 15-N-acetylglucosaminides of 15 alpha-hydroxyesterone, 15 alpha-hydroxyestradiol, and 15 alpha-hydroxyestriol (estetrol) is described. The latter two were prepared by condensation of 2-acetamido-1 alpha-chloro-1,2-dideoxy-3,4,6-trio-O-acetyl-D-glucopyranose with appropriately protected 15 alpha-hydroxyestrogens by the Koenigs-Knorr reaction employing cadmium carbonate as a catalyst. Subsequent removal of protecting groups with methanolic potassium hydroxide provided the desired conjugates. 15 alpha-Hydroxyestrone 15-N-acetylglucosaminide was synthesized from the corresponding 15 alpha-hydroxyestradiol derivative by Jones oxidation followed by brief alkaline hydrolysis. These conjugates underwent enzymatic hydrolysis with beta-N-acetylglucosaminidase from Jack beans to produce 15 alpha-hydroxyestrogens.

Acetylglucosaminidase↗

Borate and molybdate inhibition of catechol estrogen and pyrocatechol methylation by catechol-O-methyltransferase.

The possibility that boron and molybdenum anions can influence sex steroid metabolism by forming complexes with catechol estrogens has been studied in vitro. The formation of 2-methoxyestrone (2-OHE1 2-Me) from 2-hydroxyestrone (2-OHE1) by catechol-O-methyltransferase (COMT) was followed by measuring the transfer of the radiolabeled methyl group from S-adenosylmethionine. In the presence of both sodium tetraborate and sodium molybdate using a phosphate buffer medium, the formation of 2-OHE1 2-Me decreased as the anion:2-OHE1 molar ratio was increased. However, the reverse effect was observed when using a tris buffer medium and further investigation showed that phosphate and sulphate also enhanced COMT activity in a tris buffer medium. Boric acid affinity medium, used as a substitute for borate salt, also showed a negative relationship with enzyme activity in a phosphate buffer medium, and inhibition of methylation was more marked than with the free anion. Erythrocytes contain appreciable amounts of COMT, which is mostly responsible for the rapid O-methylation of catechol estrogens in blood. The methylation of a simple catechol compound, 1,2-dihydroxybenzene (pyrocatechol) was therefore studied using rat red blood cell lysates. Methylation was inhibited in a concentration-related manner by borate, as found in the studies of 2-OHE1. It is possible that high dietary intakes of boron or molybdenum could regulate the rate of catabolism, or even the metabolic fate of the major estrogens.

Animals↗

Catechol estrogen formation in MCF-7 cell culture and effects of bromoestrogen inhibitors.

Agonist and antagonist activities have been reported for several catechol estrogens given exogenously. Since the metabolic clearance rate for catechol estrogens in the body is very rapid, catechol estrogens produced at other tissues will have minimal effect on breast tissue. Information of the extent of catechol estrogen formation within cells is critical in assessing the overall importance of these estrogen metabolites. Investigations of the conversion of estrogens to catechol estrogens were performed in the MCF-7 human mammary carcinoma cell culture system. Reverse-phase high-performance liquid chromatography (HPLC) analysis demonstrated that very little metabolism of estradiol occurs after 48 h, with only small amounts of estrone, 2-hydroxyestradiol, 2-hydroxyestrone, and estriol being observed. The total amount of 2-hydroxyestrogen products formed from 1 microM estradiol was 406.2 pmol (SD = 60.9) per 3 x 10(7) cells in 48 h. Similar results were obtained using the simpler radiometric assay for estrogen 2-hydroxylase, which measures the release of 3H2O from [2(-3)H]estradiol. The effects of inhibitors of estrogen 2-hydroxylase were also examined in MCF-7 cells. 2-Bromoestradiol, 4-bromoestradiol, and 2,4-dibromoestradiol effectively block estrogen 2-hydroxylase in a dose-dependent manner in MCF-7 cultures, with ED50 of approximately 1 microM for each inhibitor. Furthermore, these bromoestrogens bind poorly to estrogen receptors in MCF-7 cells and do not alter cell growth. Thus, in MCF-7 mammary cell cultures, metabolism of estradiol occurs to only a minor degree, and it is unlikely that the levels of catechol estrogens would reach physiologically relevant concentrations in the intact breast cancer cells.(ABSTRACT TRUNCATED AT 250 WORDS)

Breast Neoplasms↗

Glucocorticoids suppress and oestrogens enhance the lipopolysaccharide-induced increase in putrescine and N1-acetylspermidine in mouse liver.

Previously we reported that administration of lipopolysaccharide (LPS) to mice increased the hepatic levels of putrescine (PUT) and N1-acetylspermidine (N1-acetyl-SPD). In the current study, we examined the in vivo effects of some steroid hormones on the LPS-induced increase in PUT and N1-acetyl-SPD. Corticosterone, hydrocortisone and dexamethasone suppressed the LPS-induced increase in PUT and N1-acetyl-SPD in mouse liver in a dose-dependent manner, dexamethasone being the most effective among them. On the other hand, oestrone and oestradiol-17 beta enhanced the LPS-induced increase in PUT and N1-acetyl-SPD in a dose-dependent manner. Oestradiol-17 alpha and 16 beta-ethyl-oestradiol, as an inactive oestradiol isomer and an antioestrogen, respectively, likewise enhanced the increase in PUT and N1-acetyl-SPD concentrations induced by LPS. 16 alpha-hydroxy-oestradiol (oestriol), 16 alpha-hydroxyestrone, 2-hydroxyoestradiol, 2-hydroxyoesterone, progesterone, testosterone, diethylstilboestrol and nonsteroidal antioestrogens such as tamoxifen and nafoxidine had no effect on the increase. Oestradiol-17 beta enhanced and corticosterone had little effect on the carbon tetrachloride-induced increase in PUT and N1-acetyl-SPD. These results suggest that glucocorticoids suppress the increase by preventing the immunological injury by Kupffer cells on hepatocytes and that the stimulatory effect of oestrogens may not be associated with their oestrogenic activities mediated by the oestrogen receptor system.

Animals↗

Dietary phytoestrogens and cancer: in vitro and in vivo studies.

Thirty postmenopausal women (11 omnivores, 10 vegetarians and 9 apparently healthy women with surgically removed breast cancer) were investigated with regard to the association of their urinary excretion of estrogens, lignans and isoflavonoids (all diphenols) with plasma sex hormone binding globulin (SHBG). A statistically significant positive correlation between urinary total diphenol excretion and plasma SHBG was found which remained statistically significant after elimination of the confounding effect of body mass determined by body mass index (BMI). Furthermore we found a statistically significant negative correlation between plasma SHBG and urinary excretion of 16 alpha-hydroxyestrone and estriol which also remained significant after eliminating the effect of BMI. Furthermore we observed that enterolactone (Enl) stimulates the synthesis of SHBG by HepG2 liver cancer cells in culture acting synergistically with estradiol and at physiological concentrations. Enl was rapidly conjugated by the liver cells, mainly to its monosulfate. Several lignans and the isoflavonoids daidzein and equol were found to compete with estradiol for binding to the rat uterine type II estrogen binding site (the s.c. bioflavonoid receptor). It is suggested that lignans and isoflavonoids may affect uptake and metabolism of sex hormones by participating in the regulation of plasma SHBG levels and in this way influence their biological activity and that they may inhibit cancer cell growth like some flavonoids by competing with estradiol for the type II estrogen binding sites.

Animals↗

Influence of indole carbinols and growth hormone on the metabolism of 4-androstenedione by rat liver microsomes.

The effect of indole-3-carbinol (IC), an anticarcinogen present in cruciferous vegetables, to alter the metabolism of 4-androstenedione (AD) by female rat liver microsomes was investigated and compared to that of its main gastric conversion product, diindolylmethane (DIM) as well as other specific cytochrome P450 inducers. DIM was a more potent inducer of the hydroxylase which converts androsterone to its 6 beta-hydroxylated derivative 3 alpha, 6 beta-dihydroxy-5 alpha-androstan-17-one (A) than IC after either oral or intraperitoneal administration and was also a better in vitro inhibitor. Isosafrole (ISF), which like IC and DIM, induces CYP1A2 as well as gestodene, were powerful inhibitors of the in vitro reaction. Naringenin produced only a weak inhibitory effect while 3-methylcholanthrene was inactive. SKF-525A, a prototypic hydroxylase inhibitor, or 17 beta-N,N-diethylcarbamoyl-4-methyl-4-aza-5 alpha-androst-1-ene-3-one which inhibits steroid 5 alpha-reductase, also decreased the formation of A from AD by liver microsomes. The infusion of human growth hormone by osmotic minipump, which feminizes hepatic steroid metabolism, increased the ability of male rat liver microsomes to convert AD to A and to respond to induction by IC. The identity of A, the main polar derivative of AD, induced by IC, DIM and ISF, was tentatively assigned by a combination of GC-MS and results from metabolic studies with intermediates in the pathway leading to its formation. It is proposed that the protective role of indole carbinols against mammary carcinoma due to decreased formation of 16 alpha-hydroxyestrone from estrone may be further enhanced by the diminished availability of AD for aromatization to estrone.

Administration, Oral↗

Steroid sulfation by expressed human cytosolic sulfotransferases.

The human cytosolic sulfotransferases (STs), dehydroepiandrosterone sulfotransferase (DHEA-ST) and the phenol-sulfating form of phenol sulfotransferase, (P-PST), have been expressed in bacteria and used to investigate the ability of the cloned enzymes to conjugate steroids and related compounds. DHEA-ST was capable of sulfating all of the 3-hydroxysteroids, testosterone and estrogens tested as substrates. The 3-hydroxysteroids, androsterone, epiandrosterone and androstenediol, were conjugated at 50-60% of the rate of DHEA. Of the steroids tested, P-PST was capable of conjugating only the estrogens. The catechol estrogens, 2-hydroxyestradiol, 4-hydroxyestradiol and 4-hydroxyestrone, and compounds with estrogenic activity such as 17 alpha-ethynyl-estradiol and trans-4-hydroxytamoxifen, were also tested as substrates. DHEA-ST showed little or no sulfation activity with these compounds; however, all of these compounds were sulfated by P-PST. These results indicate that the expressed human STs are valuable in analyzing the overlapping substrate specificities of these enzymes and that P-PST may have an important role in the metabolism of estrogens and estrogenic compounds in human tissues.

Amino Acid Sequence↗

Catechol estrogen quinones as initiators of breast and other human cancers: implications for biomarkers of susceptibility and cancer prevention.

Exposure to estrogens is associated with increased risk of breast and other types of human cancer. Estrogens are converted to metabolites, particularly the catechol estrogen-3,4-quinones (CE-3,4-Q), that can react with DNA to form depurinating adducts. These adducts are released from DNA to generate apurinic sites. Error-prone base excision repair of this damage may lead to the mutations that can initiate breast, prostate and other types of cancer. The reaction of CE-3,4-Q with DNA forms the depurinating adducts 4-hydroxyestrone(estradiol) [4-OHE1(E2)-1-N3Ade and 4-OHE1(E2)-1-N7Gua. These two adducts constitute more than 99% of the total DNA adducts formed. Increased levels of these quinones and their reaction with DNA occur when estrogen metabolism is unbalanced. Such an imbalance is the result of overexpression of estrogen activating enzymes and/or deficient expression of the deactivating (protective) enzymes. This unbalanced metabolism has been observed in breast biopsy tissue from women with breast cancer, compared to control women. Recently, the depurinating adduct 4-OHE1(E2)-1-N3Ade has been detected in the urine of prostate cancer patients, but not in urine from healthy men. Mutagenesis by CE-3,4-Q has been approached from two different perspectives: one is mutagenic activity in the lacI reporter gene in Fisher 344 rats and the other is study of the reporter Harvey-ras gene in mouse skin and rat mammary gland. A-->G and G-->A mutations have been observed in the mammary tissue of rats implanted with the CE-3,4-Q precursor, 4-OHE2. Mutations have also been observed in the Harvey-ras gene in mouse skin and rat mammary gland within 6-12 h after treatment with E2-3,4-Q, suggesting that these mutations arise by error-prone base excision repair of the apurinic sites generated by the depurinating adducts. Treatment of MCF-10F cells, which are estrogen receptor-alpha-negative immortalized human breast epithelial cells, with E2, 4-OHE2 or 2-OHE2 induces their neoplastic transformation in vitro, even in the presence of the antiestrogen ICI-182,780. This suggests that transformation is independent of the estrogen receptor. The transformed cells exhibit specific mutations in several genes. Poorly differentiated adenocarcinomas develop when aggressively transformed MCF-10F cells are selected and injected into severe combined immune depressed (SCID) mice. These results represent the first in vitro/in vivo model of estrogen-induced carcinogenesis in human breast epithelial cells. In other studies, the development of mammary tumors in estrogen receptor-alpha knockout mice expressing the Wnt-1 oncogene (ERKO/Wnt-1) provides direct evidence that estrogens may cause breast cancer through a genotoxic, non-estrogen receptor-alpha-mediated mechanism. In summary, this evidence strongly indicates that estrogens can become endogenous tumor initiators when CE-3,4-Q react with DNA to form specific depurinating adducts. Initiated cells may be promoted by a number of processes, including hormone receptor stimulated proliferation. These results lay the groundwork for assessing risk and preventing disease.

Animals↗

Simultaneous determination of endocrine disrupting phenolic compounds and steroids in water by solid-phase extraction-gas chromatography-mass spectrometry.

A solid-phase extraction (SPE)-gas chromatography (GC)-mass spectrometry (MS) analytical method for the simultaneous separation and determination of endocrine disrupting chemicals (EDCs) from water samples is described in detail. Important and contrasting EDCs including estrone, 17beta-estradiol, 17beta-ethynylestradiol, 16beta-hydroxyestrone, 4-nonylphenol, bisphenol A and 4-tert-octylphenol were selected as the target compounds. The SPE technique, followed by the derivatisation with bis (trimethylsilyl) trifluoroacetamide was used for the extraction recoveries of target compounds from water samples. A number of parameters that may affect the recovery of EDCs, such as the type of SPE cartridges, eluents, as well as water properties including pH value, and concentration of salts and humic substances were investigated. It is shown that the Oasis cartridges produced the best recoveries of target EDCs while ethyl acetate was efficient in eluting EDCs from SPE cartridges. The recovery of some EDCs was enhanced by the addition of salt, but reduced by the increase in pH value and humic acid concentration. The optimised method was further verified by performing spiking experiments in natural river water and seawater matrices, with good recovery and reproducibility for all the selected compounds. The established method was successfully applied to environmental water samples from East and West Sussex, UK, for the determination of the target EDCs.

Calibration↗

Microwave-assisted extraction followed by gas chromatography-mass spectrometry for the determination of endocrine disrupting chemicals in river sediments.

In this study, microwave-assisted extraction (MAE) followed by gas chromatography (GC)-mass spectrometry (MS) analysis has been successfully developed for the simultaneous extraction and determination of contrasting endocrine disrupting chemicals (EDCs) including 17beta-estradiol, estrone, 17(alpha-ethynylestradiol, 16alpha-hydroxyestrone, 4-nonylphenol, 4-tert-octylphenol and bisphenol A in river sediments. For MAE, the effects of various parameters on the extraction efficiency were investigated. It is shown that the most efficient extraction (recovery > 74%) of the target compounds was achieved by using methanol as the solvent, an extraction temperature of 110 degrees C and 15 min of holding time. The cleanup of extracts was carried out by passage through a non-deactivated silica gel column, and a satisfactory elution efficiency of all compounds was achieved using a solvent mixture of ethyl acetate-hexane (4:6, v/v). The spiking experiments show that the mean recovery of the target compounds exceeded 61% at a spiking level of 5 ng/g dry mass, and 73% at 10, 40 and 100 ng/g dry mass with a good reproducibility. The method developed was applied to the determination of target EDCs in river sediments collected from rivers Uck and Ouse, UK, and results revealed the presence of the chosen compounds at low ng/g level.

Endocrine Glands↗

Breast cancer risk during HRT: influence of estradiol metabolites on breast cancer and endothelial cell proliferation.

OBJECTIVES: Long-term hormone replacement therapy is associated with an increased breast cancer risk. Evidence is accumulating that estradiol metabolites are involved in carcinogenesis. These metabolites may have proliferating and anti-proliferative properties. We have investigated the effect of 14 metabolites on the proliferation of human breast cancer cells and on the proliferation of human vascular endothelial cells. METHODS: As cell model, human umbilical vein endothelial cells (HUVEC) and the human breast cancer cell line MCF-7 were used. The relationship between dosage and effect was tested over the pharmacological concentration range of 10(-8) to 10(-5) M. RESULTS: In HUVECs, all of 10 A-ring metabolites tested stimulated the growth of the endothelial cells at the lower concentrations. At the highest concentration, some A-ring metabolites caused significant inhibitions. The D-ring metabolites showed no marked effects compared to the A-ring metabolites. In MCF-7 cells also, nearly all A-ring metabolites demonstrated a biphasic reaction behaviour on cell proliferation. For the D-ring metabolites, this biphasic pattern was only found for 16 alpha-hydroxyestrone, but the inhibitory effect of this metabolite was weak. CONCLUSION: These results indicate that certain endogenous estradiol metabolites are able to stimulate breast cancer cell proliferation, and others may be suitable for breast cancer treatment when used in high dosages, since they inhibit cancer cell growth as well as neoangiogensis. This may be of special importance for therapy, since some of these metabolites are virtually devoid of any oestrogenic activity.

Breast Neoplasms↗

Comparison of possible carcinogenic estradiol metabolites: effects on proliferation, apoptosis and metastasis of human breast cancer cells.

OBJECTIVES: Certain estradiol metabolites may play a pivotal role in breast carcinogenesis. Of special interest are the metabolites 2-hydroxyestradiol (2-OHE2), which can react anti-carcinogenically, and 4-hydroxyestradiol (4-OHE1) and 16a-hydroxyestrone (16-OHE1), which may have procarcinogenic potential. In the present study, we have compared for the first time the effect of these metabolites and their parent substance 17beta-estradiol (E2) on proliferation, apoptosis, apoptosis markers and markers of metastatic property of human breast cancer cells. METHODS: MCF-7 cells (human estrogen-receptor positive metastatic breast cancer cell line) were incubated with the estrogens at concentrations of 0.1-100 nM. Cell proliferation rate was measured by the ATP-assay. Apoptosis was measured by cell death assay and the apoptosis markers cytochrome C, Bcl-2, Fasl and p53 were determined in cell lysates by ELISAs. The markers of metastatic property of the cell line, VEGF and MCP-1 were measured in the cell supernatant by ELISAs. RESULTS: The estrogens E2, 4-OHE2 and 16-OHE1 display a proliferative effect on MCF-7 cells which is accompanied by a down-regulation of apoptosis. Various markers of apoptosis such as Bcl-2, cytochrome C and p53 appear to be involved. No significant effect was found for the metabolite 2-OHE2. VEGF and MCP-1 were up-regulated by E2 and 16-OHE1, whereas 2-OHE2 and 4-OHE2 did not show any effect. CONCLUSIONS: The most potent estrogen regarding proliferation, apoptosis and metastasis of breast cancer cells seems to be estradiol. However, the estradiol metabolites 4-OHE2 and 16-OHE1 elicit similar properties on cell proliferation, apoptosis and metastasis as compared to estradiol but only at higher concentrations. In contrast 2-OHE2 did not show any significant effect on these parameters. Thus, intracellular estradiol metabolism may determine an individual's risk for breast carcinogenesis.

Apoptosis↗