The Expression and Regulation of Adrenomedullin in the Human Endometrium: A Candidate for Endometrial Repair

Author:

Maybin Jacqueline A.1,Battersby Sharon2,Hirani Nikhil3,Nikitenko Leonid L.4,Critchley Hilary O. D.1,Jabbour Henry N.2

Affiliation:

1. The University of Edinburgh's Centre for Reproductive Biology (J.A.M., H.O.D.C.), The Queen's Medical Research Institute, Edinburgh EH16 4TJ, United Kingdom;

2. The Medical Research Council Human Reproductive Sciences Unit (S.B., H.J.), The Queen's Medical Research Institute, Edinburgh EH16 4TJ, United Kingdom;

3. The Medical Research Council Centre for Inflammation Research (N.H.), The Queen's Medical Research Institute, Edinburgh EH16 4TJ, United Kingdom;

4. Cancer Research United Kingdom Viral Oncology Group (L.L.N.), University College London Cancer Institute, University College London, London WC1E 6BT, United Kingdom

Abstract

After menstruation, the endometrium has a remarkable capacity for repair, but the factors involved remain undefined. We hypothesize adrenomedullin (AM) plays a role in this process. Premenstrually progesterone levels decline, stimulating prostaglandin (PG) synthesis, vasoconstriction, and hypoxia. This study aimed to determine 1) AM expression throughout the menstrual (M) cycle and 2) its regulation by PG and hypoxia. Human endometrial biopsies (n = 51) were collected with ethical approval and consent. AM mRNA expression was examined by quantitative RT-PCR and was found to be selectively elevated in endometrium from the menstrual (M) phase (P < 0.001). AM immunohistochemical staining was maximal in M and proliferative (P) endometrium. Culture of secretory, but not P, explants with 100 nm PGF2α or hypoxia (0.5% O2) increased AM mRNA (P < 0.05). P explants were induced to increase AM expression using in vitro progesterone withdrawal but required the presence of hypoxia (P < 0.05). Short hairpin sequences against hypoxia-inducible factor-1α (HIF-1α) inhibited AM hypoxic up-regulation but did not alter PGF2α-induced expression. The AM receptor was immunolocalized to endothelial cells in both lymphatic and blood vessels. Conditioned medium from PGF2α-treated cells increased endothelial cell proliferation and branching (P < 0.05). This was abolished by AM receptor antagonists. In conclusion, AM is elevated at the time of endometrial repair and induces both angiogenesis and lymphangiogenesis by stimulating endothelial cell proliferation and tube formation. In the human endometrium, AM expression is up-regulated by two mechanisms: a HIF-1α-mediated hypoxic induction and a HIF-1α-independent PGF2α pathway. These physiological mechanisms may provide novel therapeutic targets for disorders such as heavy menstrual bleeding.

Publisher

The Endocrine Society

Subject

Endocrinology

Reference58 articles.

1. Endocrine regulation of menstruation.;Jabbour;Endocr Rev,2006

2. Estrogen is not essential for full endometrial restoration after breakdown: lessons from a mouse model.;Kaitu'u-Lino;Endocrinology,2007

3. Role of inflammatory mediators in human endometrium during progesterone withdrawal and early pregnancy.;Critchley;J Clin Endocrinol Metab,1999

4. Mifepristone-induced vaginal bleeding is associated with increased immunostaining for cyclooxygenase-2 and decrease in prostaglandin dehydrogenase in luteal phase endometrium.;Hapangama;J Clin Endocrinol Metab,2002

5. Menstruation in intraocular endometrial transplants in the rhesus monkey.;Markee;Contrib Embryol,1940

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