Tata Mimouni Barbotin prenatal anti-Mullerian hormone PCOS fetal programming mouse model, elevated AMH pregnancy polycystic ovary syndrome transgenerational epigenetic programming, GnRH agonist cetrorelix prenatal AMH-induced PCOS reversal mouse offspring, fetal programming PCOS adult onset AMH excess LH hypersecretion androgen overproduction, Nature Medicine 2018 AMH PCOS fetal origin developmental programming, anti-Mullerian hormone maternal excess pituitary GnRH neuron activation fetus, PCOS heritability developmental origin in utero AMH exposure mouse model evidence, neuroendocrine disruption fetal GnRH neurons AMH receptor testosterone masculinization, polycystic ovary syndrome prevention GnRH antagonist prenatal treatment strategy, transgenerational PCOS transmission prenatal hormonal milieu offspring phenotype
Keywords
Adult, Animals, Anti-Mullerian Hormone/administration & Dosage/blood, Brain/pathology, Case-Control Studies, Estrous Cycle, Female, Fertility, Fetus/metabolism, Gonadotropin-Releasing Hormone/metabolism, Green Fluorescent Proteins/metabolism, Humans, Luteinizing Hormone/metabolism, Mice, Inbred C57BL, Neurons/metabolism, Neurosecretory Systems/metabolism, Ovary/pathology, Phenotype, Placenta/pathology, Polycystic Ovary Syndrome/blood/pathology/physiopathology, Pregnancy, Pregnancy Trimester, Second/blood, Green Fluorescent Proteins, Gonadotropin-Releasing Hormone, Anti-Mullerian Hormone, Luteinizing Hormone