hrp0095rfc10.4 | GH and IGFs | ESPE2022

Recombinant PAPP-A2 induces sex-specific increases in body weight and length and changes in bone microstructure in adolescent mice with longitudinal growth reduction induced by Pappa2 deletion

del Mar Fernández-Arjona María , Rubio Leticia , López-Gambero Antonio , Rivera Patricia , Vargas Antonio , Rodríguez de Fonseca Fernando , A. Chowen Julie , Argente Jesús , Suárez Juan

Deficiency of pregnancy-associated plasma protein-A2 (PAPP-A2), a protease that regulates IGF-1 availability, causes postnatal growth failure and changes in bone size and density in humans and mice. The present study aimed to determine the effects of daily administration (from PND5 to PND35) of recombinant murine (rm) PAPP-A2, in comparison to rmGH and rmIGF1, on mouse auxology and bone microarchitecture in homozygous Pappa2 knock-out (ko/ko) mice of both sexes. Hormone treatm...

hrp0095p2-13 | Adrenals and HPA Axis | ESPE2022

Failure to Thrive as A Manifestation of Neonatal Cushing.

Isabel Scheidt Maria , de Assis Galan Camila , Cristina Pedroso de Paula Leila , da Costa Rodrigues Ticiana , Antonio Czepielewski Mauro , Guaragna Filho Guilherme

Failure to thrive is a term used to describe inadequate growth or the inability to maintain growth, which usually occurs in early childhood. Case report: female patient, 7 months old, referred to the pediatric clinic of Hospital de Clínicas de Porto Alegre due to a possible syndromic condition. He had no diagnosed comorbidity to date and was using only prophylactic ferrous sulfate and vitamin D. No family history of similar illness. Physical examination showed hypertric...

hrp0089p1-p222 | Sex Differentiation, Gonads and Gynaecology or Sex Endocrinology P1 | ESPE2018

A De Novo Missense Mutation in the 4th Zinc Finger of the WT1 Gene Causes 46,XY and 46,XX DSD in Two Sibs

Bertalan Rita , Gellen Balazs , Eozenou Caroline , McElreavey Kenneth , Bashamboo Anu

The WT1 gene has a crucial role in the genesis of the bipotential genital ridge and subsequently in the specification of the Sertoli cells of testis. Mutations involving the WT1 gene are associated with a wide range of phenotypes impacting testis-determination and development including Denys-Drash syndrome, Frasier syndrome and Meacham syndrome. Here, we describe two sibs with DSD carrying a de novo mutation in the WT1 gene. A girl was born with Prader IV intersex genitals. Cy...

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, ...

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 ...

hrp0089p2-p267 | Growth & Syndromes P2 | ESPE2018

Clinical and Molecular Characterization of Eight Chinese Children with Cornelia de Lange Syndrome Using Targeted Next Generation Sequencing

Chang Guoying

Cornelia de Lange Syndrome (CdLS) is a very rare genetic disorder present from birth, but not always diagnosed at birth. It causes a range of physical, cognitive and medical challenges and affects both genders equally. The present study described eight unrelated Chinese children who present with delayed growth and small stature, developmental delay, unusual facial features, limb abnormalities and a wide range of health conditions. Targeted-next generation sequencing using the ...

hrp0082fc12.1 | Obesity | ESPE2014

High-Fat Diet Rapidly Triggers Circadian De-Synchronization of Clock Genes, Neuropeptides and Inflammation Mediators in the Hypothalamus of C57BL Mice

Hernandez-Nuno Francisco , Ruiz-Gayo Mariano , Diaz Francisca , Argente Jesus , Chowen Julie A

Background: Circadian disorganization of feeding behavior evoked by high fat diet (HFD) intake is suggested to be involved in the resulting weight gain and development of associated metabolic alterations and hypothalamic inflammation.Hypothesis: We hypothesized that this circadian alteration might be a consequence of rapid de-synchronization of different gene clusters relevant for metabolic control.Methods: We analyzed the circadia...

hrp0092rfc15.5 | Late Breaking Abstracts | ESPE2019

De novo Missense Mutation in SP7 in a Patient with Cranial Hyperostosis, Long Bone Fragility, and Increased Osteoblast Number

Raimann Adalbert , Lui Julian C , Roschger Paul , Wintergerst Uwe , Klaushofer Klaus , Stelzl Robert , Biedermann Rainer , Laccone Franco , Fratzl-Zelman Nadja , Hojo Hironori , Dong Lijin , Jee Youn Hee , Baron Jeffrey , Haeusler Gabriele

Background: Sp7, also known as Osterix (Osx), is a zinc-finger transcription factor, essential for osteoblast differentiation and bone formation. While bone formation is absent in Osx knockout mice, human loss of function mutations lead to impaired bone formation and cause recessive osteogenesis imperfecta, type XII (OMIM 613849 ).Case: The 5-year-old son of non-consanguineous parents presented with multiple long bone fr...