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Development and Function of the Human Fetal Adrenal Cortex: a Key Component in the Feto-placental Unit

Overview
Journal Endocr Rev
Specialty Endocrinology
Date 2010 Nov 6
PMID 21051591
Citations 112
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Abstract

Continuous efforts have been devoted to unraveling the biophysiology and development of the human fetal adrenal cortex, which is structurally and functionally unique from other species. It plays a pivotal role, mainly through steroidogenesis, in the regulation of intrauterine homeostasis and in fetal development and maturation. The steroidogenic activity is characterized by early transient cortisol biosynthesis, followed by its suppressed synthesis until late gestation, and extensive production of dehydroepiandrosterone and its sulfate, precursors of placental estrogen, during most of gestation. The gland rapidly grows through processes including cell proliferation and angiogenesis at the gland periphery, cellular migration, hypertrophy, and apoptosis. Recent studies employing modern technologies such as gene expression profiling and laser capture microdissection have revealed that development and/or function of the fetal adrenal cortex may be regulated by a panoply of molecules, including transcription factors, extracellular matrix components, locally produced growth factors, and placenta-derived CRH, in addition to the primary regulator, fetal pituitary ACTH. The role of the fetal adrenal cortex in human pregnancy and parturition appears highly complex, probably due to redundant and compensatory mechanisms regulating these events. Mounting evidence indicates that actions of hormones operating in the human feto-placental unit are likely mediated by mechanisms including target tissue responsiveness, local metabolism, and bioavailability, rather than changes only in circulating levels. Comprehensive study of such molecular mechanisms and the newly identified factors implicated in adrenal development should help crystallize our understanding of the development and physiology of the human fetal adrenal cortex.

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References
1.
Bocian-Sobkowska J . Morphometric study of the human suprarenal gland in the first postnatal year. Folia Morphol (Warsz). 2000; 58(4):275-84. View

2.
Lockwood C, Radunovic N, Nastic D, Petkovic S, Aigner S, Berkowitz G . Corticotropin-releasing hormone and related pituitary-adrenal axis hormones in fetal and maternal blood during the second half of pregnancy. J Perinat Med. 1996; 24(3):243-51. DOI: 10.1515/jpme.1996.24.3.243. View

3.
Ishimoto H, Ginzinger D, Jaffe R . Adrenocorticotropin preferentially up-regulates angiopoietin 2 in the human fetal adrenal gland: implications for coordinated adrenal organ growth and angiogenesis. J Clin Endocrinol Metab. 2006; 91(5):1909-15. DOI: 10.1210/jc.2005-2252. View

4.
Sun K, Ma R, Cui X, Campos B, Webster R, Brockman D . Glucocorticoids induce cytosolic phospholipase A2 and prostaglandin H synthase type 2 but not microsomal prostaglandin E synthase (PGES) and cytosolic PGES expression in cultured primary human amnion cells. J Clin Endocrinol Metab. 2003; 88(11):5564-71. DOI: 10.1210/jc.2003-030875. View

5.
Kiiveri S, Liu J, Westerholm-Ormio M, Narita N, Wilson D, Voutilainen R . Differential expression of GATA-4 and GATA-6 in fetal and adult mouse and human adrenal tissue. Endocrinology. 2002; 143(8):3136-43. DOI: 10.1210/endo.143.8.8939. View