ISSN 1662-4009 (online)

ey0020.5-12 | Basic Research | ESPEYB20

5.12. Defective jagged-1 signaling affects GnRH development and contributes to congenital hypogonadotropic hypogonadism

L Cotellessa , F Marelli , P Duminuco , M Adamo , GE Papadakis , L Bartoloni , N Sato , M Lang-Muritano , A Troendle , WS Dhillo , A Morelli , G Guarnieri , N Pitteloud , L Persani , M Bonomi , P Giacobini , V Vezzoli

Brief summary: Using a combination of expression studies in human embryos as well as functional studies in zebrafish and genetic sequencing of patient with congenital hypogonadotropic hypogonadism, this study identified a novel role for Jag1/Notch signaling in the development of GnRH neurons.GnRH neurons have a unique characteristic as they start life in the olfactory placode and then migrate into the hypothalamus during embryonic development, thanks to ...

ey0019.7-10 | Basic Science | ESPEYB19

7.10. The cryptic gonadotropin-releasing hormone neuronal system of human basal ganglia

K Skrapits , M Sarvari , I Farkas , B Gocz , S Takacs , E Rumpler , V Vaczi , C Vastagh , G Racz , A Matolcsy , N Solymosi , S Poliska , B Toth , F Erdelyi , G Szabo , MD Culler , C Allet , L Cotellessa , V Prevot , P Giacobini , E Hrabovszky

Elife. 2021 Jun 15;10:e67714. doi: 10.7554/eLife.67714. PMID: 34128468https://elifesciences.org/articles/67714Brief Summary: This histological and transcriptomic study evaluates the presence and the potential role of extra-hypothalamic GnRH neurons in humans and identifies cholinergic GnRH-synthesizing cells in the human basal...

ey0020.5-8 | Clinical Guidance and Studies | ESPEYB20

5.8. GnRH replacement rescues cognition in Down syndrome

M Manfredi-Lozano , V Leysen , M Adamo , I Paiva , R Rovera , JM Pignat , FE Timzoura , M Candlish , S Eddarkaoui , SA Malone , MSB Silva , S Trova , M Imbernon , L Decoster , L Cotellessa , M Tena-Sempere , M Claret , A Paoloni-Giacobino , D Plassard , E Paccou , N Vionnet , J Acierno , AM Maceski , A Lutti , F Pfrieger , S Rasika , F Santoni , U Boehm , P Ciofi , L Buee , N Haddjeri , AL Boutillier , J Kuhle , A Messina , B Draganski , P Giacobini , N Pitteloud , V Prevot

Brief summary: This study identified a new role for GnRH in higher brain function using a rodent model of Down Syndrome. It reports for the first time an improvement of cognitive functions in patients with Down Syndrome treated with pulsatile GnRH.GnRH neurons are classically described as a population of neurons located in the hypothalamus and responsible for the activation and regulation of the hypothalamic-pituitary-gonadal axis. However, the recent de...