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Biomedical subjects

F Naftolin

Publications and source records attributed to F Naftolin.

406 records · Page 23Linked to original sources

Regulation of fas ligand expression in breast cancer cells by estrogen: functional differences between estradiol and tamoxifen.

During neoplastic growth and metastasis, the immune system responds to the tumor by developing both cellular and humoral immune responses. In spite of this active response, tumor cells escape immune surveillance. We previously showed that FasL expression by breast tumor plays a central role in the induction of apoptosis of infiltrating Fas-immune cells providing the mechanism for tumor immune privilege. In the present study, we showed that FasL in breast tissue is functionally active, and estrogen and tamoxifen regulate its expression. We identified an estrogen recognizing element like-motif in the promoter region of the FasL gene, suggesting direct estrogen effects on FasL expression. This was confirmed by an increase in FasL expression in both RNA and protein levels in hormone sensitive breast cancer cells treated with estradiol. This effect is receptor mediated since tamoxifen blocked the estrogenic effect. Interestingly, tamoxifen also inhibited FasL expression in estrogen-depleted conditions. Moreover, an increase in FasL in breast cancer cells induces apoptosis in Fas bearing T cells and, tamoxifen blocks the induction of apoptosis. These studies provide evidence that tamoxifen inhibits FasL expression, allowing the killing of cancer cells by activated lymphocytes. This partially explains the protective effect of tamoxifen against breast cancer.

Breast Neoplasms↗

Mouse ascites golgi (MAG) mucin expression and regulation by progesterone in the rat uterus.

OBJECTIVE: To study the regulation of the blood group A-related high-molecular weight mucin glycoprotein epitope (mouse ascites golgi, MAG)-a menstrual cycle-dependent marker of endometrial receptivity-in a non-human endometrium model. METHODS: Immature Sprague-Dawley rats were injected with 1 microg of estradiol, 100 microg of testosterone, 100 microg of dexamethasone, 2.5 mg of progesterone (P), 0.325 mg of RU486, P and RU486, 100 microg of tamoxifen, or vehicle for 3 days, sacrificed, and the uteri were stained for MAG. Immunohistochemistry and blood analysis were the measurements used to compare the specimens from the exogenous hormonal and endogenous hormonal groups. Electron microscopy was used to locate the MAG epitope in one pseudopregnant adult Sprague-Dawley rat. RESULTS: The MAG epitope was present in endometrial glands of Sprague-Dawley rats, with maximal expression during proestrus and diestrus. Electron microscopy confirmed the Golgi location of this MAG epitope. In the untreated group, less than 0.5% of endometrial glands stained for MAG. The MAG was seen only in the glands of the P-treated rats and RU486 blunted this stimulatory effect by more than 95%. As little as 0.1 mg of P promoted MAG expression, with maximal response at 2.5 mg. Staining was seen 24 hours after P treatment, peaked at 72 hours, then declined. Induction of endogenous P by superovulation with pregnant mare serum gonadotropin (PMSG) and hCG (pseudopregnancy) also resulted in strong MAG glandular staining. CONCLUSION: Our results suggest that the MAG epitope is cyclically expressed and induced by P in rat endometrial glands.

ABO Blood-Group System↗

Hormonal regulation of K+-channel messenger RNA in rat myometrium during oestrus cycle and in pregnancy.

The dramatic enhancement of smooth-muscle excitability in the uterus which occurs at oestrus and at term in pregnant rats is closely related to increased blood oestrogen concentrations. How oestrogen alters the electrical properties of myometrial cells is unclear, although electrical coupling between cells has been shown to increase. Many examples are known of changes in cellular excitability involving modification of existing ion channels by second-messenger pathways. Steroid hormones, in contrast, are generally thought to influence cellular processes mainly through effects on gene expression, inducing the synthesis of new proteins. Previous work, using an oocyte translation system, has shown that a very slowly activating, voltage-dependent K+ current can be expressed from the poly(A)+ RNA of oestrogen-treated rat uteri. We report here that the messenger RNA species producing this channel is rapidly and reversibly induced in the presence of oestrogen, as shown by the appearance and disappearance of this mRNA during the oestrous cycle, its emergence at the end of pregnancy, and its presence or absence following hormonal treatments. These results suggest that oestrogen controls the expression of a voltage-dependent ion channel in uterine smooth muscle cells.

Animals↗

Estrogen mustard induces cell cycle arrest of human epithelial ovarian cancer cell lines.

OBJECTIVE: Pharmacologic disruption of microtubule function may provide effective therapy for advanced epithelial ovarian cancer, as has been observed in clinical trials using taxol. However, the limited availability of taxol and taxol's side effects emphasize a need to develop alternative antimicrotubule agents. Estramustine (EM) inhibits binding of microtubule-associated proteins (MAPs) to microtubules, promotes microtubule disassembly, disrupts spindle formation, and induces metaphase arrest in human prostate carcinoma and glioma cells in culture. We studied the effect of EM on DNA synthesis and on the cell cycle in four human ovarian carcinoma cell lines and examined the cell lines for evidence of MAP-like immunoreactivity. METHODS: The effect of EM on DNA synthesis and on the cell cycle was determined using [3H]thymidine incorporation assays and flow cytometry, respectively. Microtubule-associated protein-like immunoreactivity was determined using monoclonal antibodies directed against MAP 1A, MAP 1B, and MAP 2(2A + 2B) for Western analysis after sodium dodecyl sulfate-polyacrylamide gel electrophoresis. RESULTS: We demonstrated a dose-dependent inhibitory response to EM in BIXLER, DK2NMA, and SKOV3. BIX3 showed a dose-dependent inhibitory response to EM concentrations from 25 micrograms/mL to 100 micrograms/mL, but a stimulatory response at 10 micrograms/mL. Estramustine inhibited exponentially growing cells by causing mitotic arrest with subsequent accumulation of cells in G2/M phase of the cell cycle in all four cell lines. We found MAP 1A, MAP 1B, and MAP 2-like immunoreactivity in all four cells lines studied. CONCLUSIONS: These results are consistent with a MAP-microtubule mechanism of action for EM in ovarian carcinoma cells and provide reason to conduct further study of EM for potential use in the treatment of human epithelial ovarian cancer.

Antineoplastic Agents, Hormonal↗

The basis and evidence of a role for the ovarian renin-angiotensin system in health and disease.

OBJECTIVE: We reviewed the evidence for an intrinsic ovarian renin-angiotensin system (OVRAS), highlighting potential diverse signaling in this system through different bioactive angiotensin peptides, their specific receptors, and second messengers. In addition, sites of action for OVRAS in the regulation of ovarian function in health and disease were reviewed. DATA SOURCES: We used published journals and abstracts from national scientific meetings. Current developments in the renin-angiotensin field are historically set. STUDY SELECTION: One hundred referenced articles provided studies on renin-angiotensin systems in mammalian species, including humans. DATA ABSTRACTION: Interpretation of the reviewed publication was in line with the original authors' conclusions and statistical analysis. DATA SYNTHESIS: Techniques in molecular biology, biochemistry, and immunohistochemistry have identified an OVRAS in mammalian species. Ovarian tissues contain all the elements for the production of angiotensin, including prorenin/renin, angiotensinogen, and angiotensin-converting enzyme. In addition, angiotensin II is present in ovarian compartments, and receptors for angiotensin II are demonstrated on specific ovarian cells. Angiotensin II is implicated to play a role in ovulation, steroidogenesis, follicular atresia, and hyperandrogenic syndromes. CONCLUSIONS: The newly identified OVRAS may have important actions in the ovary that range from regulation of ovulation to ovarian dysfunction, such as hyperandrogenic syndromes in women. In this respect, the OVRAS is a putative paracrine/autocrine regulator in the ovary, and pharmacologic regulation of the OVRAS may provide new methods for the management of fertility and reproduction.

Female↗

Estrogen receptors are identified in the glioblastoma cell line U138MG.

OBJECTIVE: The antiestrogen tamoxifen has been found to be effective in decreasing glioblastoma cell proliferation, but the mechanism underlying this effect and whether it is through the estrogen receptor (ER) is controversial. The objective of this study was to determine whether ERs are present in three human glioblastoma cell lines--HS683, U138MG, and JHN J889H--using the most sensitive techniques available. METHODS: Ligand binding and flow cytometry were employed to identify estrogen and progesterone receptors. The reverse transcriptase-polymerase chain reaction was used to identify ER mRNA, and a novel reporter gene transfection assay demonstrated that the ER was capable of activating gene transcription. RESULTS: U138MG glioblastoma cells contain ERs that are capable of increasing gene transcription in response to estradiol. No ERs were found in HS683 or JHN J889H cells. CONCLUSION: Tamoxifen may be acting through the ER in some glioblastoma cells.

Flow Cytometry↗

The yolk sac theory: closing the circle on why diabetes-associated malformations occur.

OBJECTIVE: The purpose of this article is to examine the role of yolk sac failure during organogenesis in the development of diabetes-associated embryopathy. METHODS: The current literature regarding congenital malformations in diabetic pregnancies was reviewed to elucidate the precise role of the yolk sac in embryonic development and the relation between yolk sac injury and embryopathy. RESULTS: We and others have demonstrated that hyperglycemia produces a teratogenic effect during organogenesis. In addition, we have shown that the yolk sac appears to be the target site of injury induced by hyperglycemia. We have also presented evidence that cell membrane dysfunction leads to failed vitelline vessel formation and that arachidonic acid supplementation prevents many of the morphologic and biochemical alterations observed under hyperglycemic conditions. CONCLUSIONS: These data strongly support the teratogenic effect of hyperglycemia, the arachidonic acid deficiency state, the resultant maldevelopment of vitelline vessels, and the ability to prevent these changes by arachidonic acid supplementation. These studies have made significant inroads in explaining why diabetes-associated anomalies occur, and suggest a potential future role for prophylaxis against these organogenetic malformations using dietary polyunsaturated fatty acid supplementation.

Animals↗