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Molecular analysis of human endometrium: short-term tibolone signaling differs significantly from estrogen and estrogen + progestagen signaling

Tibolone, a tissue-selective compound with a combination of estrogenic, progestagenic, and androgenic properties, is used as an alternative for estrogen or estrogen plus progesterone hormone therapy for the treatment of symptoms associated with menopause and osteoporosis. The current study compares...

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Autores principales: Hanifi-Moghaddam, P., Boers-Sijmons, B., Klaassens, A. H. A., van Wijk, F. H., den Bakker, M. A., Ott, M. C., Shipley, G. L., Verheul, H. A. M., Kloosterboer, H. J., Burger, C. W., Blok, L. J.
Formato: Texto
Lenguaje:English
Publicado: Springer-Verlag 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2707858/
https://www.ncbi.nlm.nih.gov/pubmed/17226044
http://dx.doi.org/10.1007/s00109-006-0146-1
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author Hanifi-Moghaddam, P.
Boers-Sijmons, B.
Klaassens, A. H. A.
van Wijk, F. H.
den Bakker, M. A.
Ott, M. C.
Shipley, G. L.
Verheul, H. A. M.
Kloosterboer, H. J.
Burger, C. W.
Blok, L. J.
author_facet Hanifi-Moghaddam, P.
Boers-Sijmons, B.
Klaassens, A. H. A.
van Wijk, F. H.
den Bakker, M. A.
Ott, M. C.
Shipley, G. L.
Verheul, H. A. M.
Kloosterboer, H. J.
Burger, C. W.
Blok, L. J.
author_sort Hanifi-Moghaddam, P.
collection PubMed
description Tibolone, a tissue-selective compound with a combination of estrogenic, progestagenic, and androgenic properties, is used as an alternative for estrogen or estrogen plus progesterone hormone therapy for the treatment of symptoms associated with menopause and osteoporosis. The current study compares the endometrial gene expression profiles after short-term (21 days) treatment with tibolone to the profiles after treatment with estradiol-only (E(2)) and E(2) + medroxyprogesterone acetate (E(2) + MPA) in healthy postmenopausal women undergoing hysterectomy for endometrial prolapse. The impact of E(2) treatment on endometrial gene expression (799 genes) was much higher than the effect of tibolone (173 genes) or E(2) + MPA treatment (174 genes). Furthermore, endometrial gene expression profiles after tibolone treatment show a weak similarity to the profiles after E(2) treatment (overlap 72 genes) and even less profile similarity to E(2) + MPA treatment (overlap 17 genes). Interestingly, 95 tibolone-specific genes were identified. Translation of profile similarity into biological processes and pathways showed that ER-mediated downstream processes, such as cell cycle and cell proliferation, are not affected by E2 + MPA, slightly by tibolone, but are significantly affected by E(2). In conclusion, tibolone treatment results in a tibolone-specific gene expression profile in the human endometrium, which shares only limited resemblance to E(2) and even less resemblance to E2 + MPA induced profiles.
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spelling pubmed-27078582009-07-10 Molecular analysis of human endometrium: short-term tibolone signaling differs significantly from estrogen and estrogen + progestagen signaling Hanifi-Moghaddam, P. Boers-Sijmons, B. Klaassens, A. H. A. van Wijk, F. H. den Bakker, M. A. Ott, M. C. Shipley, G. L. Verheul, H. A. M. Kloosterboer, H. J. Burger, C. W. Blok, L. J. J Mol Med Original Article Tibolone, a tissue-selective compound with a combination of estrogenic, progestagenic, and androgenic properties, is used as an alternative for estrogen or estrogen plus progesterone hormone therapy for the treatment of symptoms associated with menopause and osteoporosis. The current study compares the endometrial gene expression profiles after short-term (21 days) treatment with tibolone to the profiles after treatment with estradiol-only (E(2)) and E(2) + medroxyprogesterone acetate (E(2) + MPA) in healthy postmenopausal women undergoing hysterectomy for endometrial prolapse. The impact of E(2) treatment on endometrial gene expression (799 genes) was much higher than the effect of tibolone (173 genes) or E(2) + MPA treatment (174 genes). Furthermore, endometrial gene expression profiles after tibolone treatment show a weak similarity to the profiles after E(2) treatment (overlap 72 genes) and even less profile similarity to E(2) + MPA treatment (overlap 17 genes). Interestingly, 95 tibolone-specific genes were identified. Translation of profile similarity into biological processes and pathways showed that ER-mediated downstream processes, such as cell cycle and cell proliferation, are not affected by E2 + MPA, slightly by tibolone, but are significantly affected by E(2). In conclusion, tibolone treatment results in a tibolone-specific gene expression profile in the human endometrium, which shares only limited resemblance to E(2) and even less resemblance to E2 + MPA induced profiles. Springer-Verlag 2007-01-17 2007-05 /pmc/articles/PMC2707858/ /pubmed/17226044 http://dx.doi.org/10.1007/s00109-006-0146-1 Text en © Springer-Verlag 2007
spellingShingle Original Article
Hanifi-Moghaddam, P.
Boers-Sijmons, B.
Klaassens, A. H. A.
van Wijk, F. H.
den Bakker, M. A.
Ott, M. C.
Shipley, G. L.
Verheul, H. A. M.
Kloosterboer, H. J.
Burger, C. W.
Blok, L. J.
Molecular analysis of human endometrium: short-term tibolone signaling differs significantly from estrogen and estrogen + progestagen signaling
title Molecular analysis of human endometrium: short-term tibolone signaling differs significantly from estrogen and estrogen + progestagen signaling
title_full Molecular analysis of human endometrium: short-term tibolone signaling differs significantly from estrogen and estrogen + progestagen signaling
title_fullStr Molecular analysis of human endometrium: short-term tibolone signaling differs significantly from estrogen and estrogen + progestagen signaling
title_full_unstemmed Molecular analysis of human endometrium: short-term tibolone signaling differs significantly from estrogen and estrogen + progestagen signaling
title_short Molecular analysis of human endometrium: short-term tibolone signaling differs significantly from estrogen and estrogen + progestagen signaling
title_sort molecular analysis of human endometrium: short-term tibolone signaling differs significantly from estrogen and estrogen + progestagen signaling
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2707858/
https://www.ncbi.nlm.nih.gov/pubmed/17226044
http://dx.doi.org/10.1007/s00109-006-0146-1
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