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An In Vivo Estrogen Deficiency Mouse Model for Screening Exogenous Estrogen Treatments of Cardiovascular Dysfunction After Menopause
Published on: August 13, 2019
Estrogens, selective estrogen receptor modulators, and a selective estrogen receptor down-regulator inhibit
Anders E A Dahm1, Nina Iversen, Baard Birkenes
1Department of Haematology, Ullevål University Hospital, 0407 Oslo, Norway. a.e.a.dahm@medisin.uio.no
Background:
Hormone therapy, oral contraceptives, and tamoxifen increase the risk of thrombotic disease. These compounds also reduce plasma content of tissue factor pathway inhibitor-1 (TFPI), which is the physiological inhibitor of the tissue factor pathway of coagulation. The current aim was to study if estrogens and estrogen receptor (ER) modulators may inhibit TFPI production in cultured endothelial cells and, if so, identify possible mechanisms involved.
Methods:
Human endothelial cell cultures were treated with 17beta-estradiol (E2), 17alpha-ethinylestradiol (EE2), tamoxifen, raloxifene, or fulvestrant. Protein levels of TFPI in cell media and cell lysates were measured by an enzyme-linked immunosorbent assay, and TFPI mRNA levels were assessed by quantitative PCR. Expression of ERalpha was analysed by immunostaining.
Results:
All compounds (each in a concentration of 10 nM) reduced TFPI in cell medium, by 34% (E2), 21% (EE2), 16% (tamoxifen), and 28% (raloxifene), respectively, with identical inhibitory effects on cellular TFPI levels. Expression of TFPI mRNA was principally unchanged. Treatment with fulvestrant, which was also associated with down-regulation of secreted TFPI (9% with 10 nM and 26% with 1000 nM), abolished the TFPI-inhibiting effect of raloxifene, but not of the other compounds. Notably, the combination of 1000 nM fulvestrant and 10 nM raloxifene increased TFPI secretion, and, conversely, 10 nM of either tamoxifen or raloxifene seemed to partly (tamoxifen) or fully (raloxifene) counteract the inhibitory effect of 1000 nM fulvestrant. The cells did not express the regular nuclear 66 kDa ERalpha, but instead a 45 kDa ERalpha, which was not regulated by estrogens or ER modulators.
Conclusion:
E2, EE2, tamoxifen, raloxifene, and fulvestrant inhibited endothelial production of TFPI by a mechanism apparently independent of TFPI transcription.
Insights
Hormone therapies like oral contraceptives and tamoxifen reduce tissue factor pathway inhibitor-1 (TFPI) levels, increasing thrombotic disease risk. This study found that estrogens and estrogen receptor modulators inhibit TFPI production in endothelial cells through a mechanism independent of TFPI transcription.
Area of Science:
- Endocrinology
- Vascular Biology
- Pharmacology
Background:
- Hormone therapy, oral contraceptives, and tamoxifen are associated with an increased risk of thrombotic disease.
- These agents reduce plasma levels of tissue factor pathway inhibitor-1 (TFPI), a key inhibitor of coagulation.
- The study investigates the impact of estrogens and estrogen receptor (ER) modulators on TFPI production in endothelial cells.
Purpose of the Study:
- To determine if estrogens and ER modulators inhibit TFPI production in cultured endothelial cells.
- To explore the potential mechanisms underlying this inhibition.
Main Methods:
- Human endothelial cells were treated with 17beta-estradiol (E2), 17alpha-ethinylestradiol (EE2), tamoxifen, raloxifene, or fulvestrant.
- TFPI protein and mRNA levels were quantified using ELISA and qPCR, respectively.
- Expression of ERalpha was analyzed via immunostaining.
Main Results:
- All tested compounds significantly reduced TFPI levels in both cell medium and lysates.
- TFPI mRNA levels remained largely unchanged, suggesting post-transcriptional regulation.
- Fulvestrant modulated TFPI inhibition by raloxifene, and specific combinations altered TFPI secretion, indicating complex interactions.
Conclusions:
- Estrogens (E2, EE2) and ER modulators (tamoxifen, raloxifene, fulvestrant) inhibit endothelial TFPI production.
- The inhibitory mechanism appears to be independent of TFPI gene transcription.
- Endothelial cells express a variant ERalpha that is not regulated by estrogens or ER modulators.
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