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Fetal, infant, adolescent and adult phenotypes of polycystic ovary syndrome in prenatally androgenized female rhesus monkeys

Bibliographic Data

ID21079025
AuthorsDavid H Abbott (0000-0002-8249-263X, University of Wisconsin–Madison, corresponding author), Alice F Tarantal (University of California, Davis), Daniel A Dumesic (0000-0003-0387-1277)
Year2009
Volume71
Issue9
Pages776-784
Publication date2009-09-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueAmerican Journal of Primatology (JOURNAL)
Journal identifiersISSN: 0275-2565 • E-ISSN: 1098-2345
PublisherWiley (PUBLISHER • GB)
DOI10.1002/ajp.20679
PMID19367587
PMCIDPMC2916860
OpenAlexW2052785258
LanguageEN
Citations received3
References cited75

Old World monkeys provide naturally occurring and experimentally induced phenotypes closely resembling the highly prevalent polycystic ovary syndrome (PCOS) in women. In particular, experimentally induced fetal androgen excess in female rhesus monkeys produces a comprehensive adult PCOS‐like phenotype that includes both reproductive and metabolic dysfunction found in PCOS women. Such a reliable experimental approach enables the use of the prenatally androgenized (PA) female rhesus monkey model to (1) examine fetal, infant and adolescent antecedents of adult pathophysiology, gaining valuable insight into early phenotypic expression of PCOS, and (2) to understand adult pathophysiology from a mechanistic perspective. Elevated circulating luteinizing hormone (LH) levels are the earliest indication of reproductive dysfunction in late gestation nonhuman primate fetuses and infants exposed to androgen excess during early (late first to second trimester) gestation. Such early gestation‐exposed PA infants also are hyperandrogenic, with both LH hypersecretion and hyperandrogenism persisting in early gestation‐exposed PA adults. Similarly, subtle metabolic abnormalities appearing in young nonhuman primate infants and adolescents precede the abdominal adiposity, hyperliplidemia and increased incidence of type 2 diabetes that characterize early gestation‐exposed PA adults. These new insights into the developmental origins of PCOS, and progression of the pathophysiology from infancy to adulthood, provide opportunities for clinical intervention to ameliorate the PCOS phenotype thus providing a preventive health‐care approach to PCOS‐related abnormalities. For example, PCOS‐like traits in PA monkeys, as in PCOS women, can improve with better insulin–glucose homeostasis, suggesting that lifestyle interventions preventing increased adiposity in adolescent daughters of PCOS mothers also may reduce their risk of acquiring many PCOS‐related metabolic abnormalities in adulthood. Am. J. Primatol. 71:776–784, 2009. © 2009 Wiley‐Liss, Inc

Androgen · Androgen Excess · Biology · Fetus · Gestation · Hormone · Hyperandrogenism · Insulin · Insulin resistance · Polycystic ovary · Pregnancy · Medicine · Ovarian function and disorders · Reproductive Biology and Fertility · Sexual Differentiation and Disorders · Endocrinology · Internal Medicine · Physiology

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Unique citing works3
Citations per year0,19
Citation span2010 - 2016 (7)
Citation velocityhistorical
Highly citedNo
Citation typesNeutral: 3

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