Hypothalamic neuroglial plasticity is regulated by anti-Müllerian hormone and disrupted in polycystic ovary syndrome

多囊卵巢 正中隆起 内分泌学 内科学 抗苗勒氏激素 促黄体激素 生物 促性腺激素释放激素 卵巢 激素 医学 胰岛素抵抗 胰岛素
作者
Anne‐Laure Barbotin,Nour El Houda Mimouni,Grégory Kuchcinski,Renaud Lopes,Romain Viard,Sowmyalakshmí Rasika,Danièle Mazur,Mauro S.B. Silva,Virginie Simon,Angèle Boursier,Jean‐Pierre Pruvo,Qiang Yu,Michael Candlish,Ulrich Boehm,Federica Dal Bello,Claudio Medana,Pascal Pigny,Didier Dewailly,Vincent Prévot,Sophie Catteau-Jonard,Paolo Giacobini
出处
期刊:EBioMedicine [Elsevier BV]
卷期号:90: 104535-104535 被引量:17
标识
DOI:10.1016/j.ebiom.2023.104535
摘要

Polycystic ovary syndrome (PCOS) is the most common reproductive-endocrine disorder affecting between 5 and 18% of women worldwide. An elevated frequency of pulsatile luteinizing hormone (LH) secretion and higher serum levels of anti-Müllerian hormone (AMH) are frequently observed in women with PCOS. The origin of these abnormalities is, however, not well understood.We studied brain structure and function in women with and without PCOS using proton magnetic resonance spectroscopy (MRS) and diffusion tensor imaging combined with fiber tractography. Then, using a mouse model of PCOS, we investigated by electron microscopy whether AMH played a role on the regulation of hypothalamic structural plasticity.Increased AMH serum levels are associated with increased hypothalamic activity/axonal-glial signalling in PCOS patients. Furthermore, we demonstrate that AMH promotes profound micro-structural changes in the murine hypothalamic median eminence (ME), creating a permissive environment for GnRH secretion. These include the retraction of the processes of specialized AMH-sensitive ependymo-glial cells called tanycytes, allowing more GnRH neuron terminals to approach ME blood capillaries both during the run-up to ovulation and in a mouse model of PCOS.We uncovered a central function for AMH in the regulation of fertility by remodeling GnRH terminals and their tanycytic sheaths, and provided insights into the pivotal role of the brain in the establishment and maintenance of neuroendocrine dysfunction in PCOS.INSERM (U1172), European Research Council (ERC) under the European Union's Horizon 2020 research and innovation program (grant agreement n° 725149), CHU de Lille, France (Bonus H).
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