hrp0089rfc5.1 | Thyroid | ESPE2018

Serum Levels of the Soluble Receptor for Advanced Glycation End Products are Reduced in Children with Hashimoto’s Thyroiditis

Aversa Tommaso , Ruggeri Rosaria Maddalena , Corica Domenico , Cristani Maria Teresa , Mirabelli Silvestro , Vicchio Teresa Maria , Trimarchi Francesco , De Luca Filippo , Wasniewska Malgorzata

Objective: Advanced glycation end products (AGEs) increased oxidative stress and promote inflammation, resulting in the cellular damage, by interacting with their receptor (RAGE) on cell membrane. By contrast, the soluble receptor for AGE (sRAGE), that is proteolytically cleaved from cell surface receptor via matrix metalloproteinases, sequester RAGE ligands and act as a cytoprotective and anti-inflammatory agent. AGEs-RAGE/sRAGE interaction is deemed to play a role in the pat...

hrp0084p1-66 | DSD | ESPE2015

46, XX Ovotesticular DSD in the Absence of SRY Gene Associated to SOX3 Duplication

Grinspon Romina P , Nevado Julian , Alvarez Maria de los Angeles Mori , Rey Rodolfo A , del Rey Graciela , Chiesa Ana

Background: Ovotesticular DSD is a rare disorder defined by the presence of both ovarian and testicular tissues in the same individual. SRY is present in approximately 1/3 of patients with 46, XX ovotesticular DSD. In SRY-negative ovotesticular DSD, the mechanism responsible for the presence of testicular tissue is not yet understood.Case presentation: A male patient was referred to us for hypospadias and bilateral cryptorchidism at 2.5...

hrp0089p3-p099 | Diabetes & Insulin P3 | ESPE2018

Case Report: De Novo Mutation of Foxp3 Causing Mild Phenotype of Immunodysregulation, Polyendocrinopathy, Enteropathy, X-Link Syndrome

Thuy Hoang Thi Diem , Minh Nguyen Khoa Binh

Immune dysregulation-polyendocrinopathy-enteropathy-X-linked syndrome (IPEX) is caused by mutations in the gene that encode for the transcription factor FOXP3. IPEX is a rare, often fatal disease. However, several cases present later onset, mild forms or less common clinical manifestations. We report a case who had de novo mutation of FOXP3 causing neonatal diabetes but without other features of IPEX syndrome. An 8 days old male, late preterm at 36 weeks, low birthweight 2200g...

hrp0095p1-347 | Pituitary, Neuroendocrinology and Puberty | ESPE2022

Congenital hypogonadotropic hypogonadism and Cornelia de Lange Syndrome share clinical phenotype and genetic background

Kolesinska Zofia , Xu Cheng , Messina Andrea , Acierno James , Niederlander Nicolas , Santoni Federico , Papadakis Georgios , Pignatelli Duarte , Avbelj Stefanija Magdalena , Smith Kimberly Keefe , Balasubramanian Ravikumar , Crowley William , Pitteloud Nelly

Background: Congenital hypogonadotropic hypogonadism (CHH) is caused by impaired function of GnRH neurons, which clinically manifests by incomplete or absent puberty and infertility. The phenotype may be broader with other developmental anomalies such as anosmia, which is known as Kallmann syndrome. To date, there are more than 40 genes in which mutations underlie CHH. Cornelia de Lange Syndrome (CdLS) is characterized by facial dysmorphia, psychomotor delay, ...

hrp0095p2-108 | Fat, Metabolism and Obesity | ESPE2022

A Noval De Novo PHIP Variant Contributing to Chung-Jansen Syndrome: a case report and review

Huang Feiyan , Liang Liyang , Hou Lele , Zhang Lina , Meng Zhe

Objectives: To present Chung-Jansen Syndrome or CHUJANS by a de novo variant in the pleckstrin homology domain-interacting protein (PHIP) gene and compare the clinical phenotype with previous case reports; ②To provide a novel genetic detection methods with whole-exome sequencing(WES) and whole genome sequencing(WGS) and Sanger sequencing for rare genetic diseases.Patients and methods: Following collecting clinical...

hrp0092p2-46 | Bone, Growth Plate and Mineral Metabolism | ESPE2019

Seasonal 25-hydroxy Vitamin D3 Variations in School-aged Children from Santiago de Chile

Poggi Helena , Dominguez Gonzalo , Monica Arancibia , Moore Rosario , D'Apremont Ivonne , Solari Sandra , Allende Fidel , Sifaqui Sofia , Garcia Hernan , Martinez-Aguayo Alejandro

Introduction: The main role of Vitamin D (VitD) is the regulation of calcium, which is also regulated by the parathyroid hormone (PTH), and phosphate metabolism. The main source of the more biologically active 25-hydroxy-Vitamin D3 (25OHVitD3) comes from the action of ultraviolet light on the skin.Aim: To determine if there are differences in concentrations of 25OHVitD3, calcium and PTH in school-aged children throughout...

hrp0097p2-158 | Sex Differentiation, Gonads and Gynaecology, and Sex Endocrinology | ESPE2023

A case of male pseudoermaphroditism (46,XY DSD) in an adolescent with a novel de novo NR5A1 gene variant.

Kostopoulou Eirini , Samkinidou Efstratia , Sertedaki Amalia , Efthymiadou Alexandra , Giannakopoulos Aristeidis , Hyun Seong-In , Lee Hane , Hun Seo Go , Chrysis Dionisios

Introduction-Purpose: In addition to chromosomal abnormalities, a number of genes have been implicated as causes of Disorders of Sexual Development (DSD). The NR5A1 (SF-1) gene expresses a transcription factor that plays a role in steroidogenesis by controlling multiple stages of adrenal and gonadal development, and its mutations have been reported in cases of DSD.Case presentation: A 152/12-year-old teenager ...

hrp0095p1-441 | Diabetes and Insulin | ESPE2022

NEUROD1 mutation as a cause of neonatal diabetes: the rarest of the rare!

Abdelmeguid Yasmine , Elwan Samar , De Franco Elisa , Abd Elmaksoud Marwa , Khater Doaa

Background: NEUROD1 encoding neurogenic differentiation 1 is known to play an important role in the development of the pancreas and central nervous system. Heterozygous mutations have been rarely identified as a cause of maturity-onset diabetes of the young (MODY6). Biallelic NEUROD1 mutations have been reported to cause neonatal diabetes mellitus (NDM) as well. However, only 3 cases have been reported worldwide so far....

hrp0095p1-315 | Growth and Syndromes | ESPE2022

A Novel PADI6 Variant as a Cause of Recurrent Miscarriage and Multi Locus Imprinting Disturbance within the same family

Stern Eve , Goldman Shira , De Franco Elisa , E Flanagan Sarah , Pinhas-Hamiel Orit , Regev Miriam

Background: Genomic imprinting is the process by which preferential methylation of one parental allele results in parent of origin specific expression of particular genes. Methylation is established during gametogenesis and is maintained throughout development. Alterations in any of the processes in the establishment and maintenance of methylation can lead to aberrant imprinting, which can result in either reactivation of the original silent allele or the sile...