hrp0086p2-p318 | Diabetes P2 | ESPE2016

A Rare Reason of Type 2 Diabetes: Alström Syndrome

Akın Onur , Ozge Gokhan , Sarı Erkan , Sarı Sinan , Unay Bulent , Yeşilkaya Ediz

Background: Alström Syndrome (ALMS), occurred due to mutations in ALMS1 gene, is a rare otosomal ressesive disorder. Seven hundred cases have been reported so far. Main clinical findings are rod con dystrofy, neurosensorial deafness, obesity and type 2 diabetes. Hypogonadism, hypothyroidism, growth hormone deficiency, hipertryglyceridemia, cognitive dysfunction, cardiomyopathy, renal, hepatic and pulmoner disorders could also be seen.Objective and h...

hrp0084p3-719 | Diabetes | ESPE2015

Fanconi-Bickel Syndrome due to a Novel SLC2A2 Mutation Presenting with Transient Neonatal Diabetes

Elmaogullari Selin , Demirel Fatma , Tepe Derya , Dincel Nida , Tayfun Meltem , Ucakturk Seyit Ahmet , Gurbuz Fatih , Jayne Houghton

Background: Fanconi-Bickel syndrome (FBS) is a glycogen storage disease caused by the homozygous mutations of SLC2A2 gene which codes GLUT2 protein. It is characterized by growth retardation, hepatomegaly and hypophosphataemic rickets. While most of the cases with FBS have fasting hypoglycaemia and postprandial hyperglycaemia, only few cases had been shown to have neonatal diabetes (ND).Case presentation: A 14 days old girl was admitted to hospital with ...

hrp0095p1-66 | Fat, Metabolism and Obesity | ESPE2022

Effect of gender and age on the mental well-being and self-esteem of adolescents living with obesity: subanalysis from the ACTION Teens global study

Pedro López Siguero Juan , A. Baur Louise , Bereket Abdullah , Bin-Abbas Bassam , Chen Walter , Fernández-Aranda Fernando , Garibay Nieto Nayely , C.G. Halford Jason , Maffeis Claudio , Mooney Vicki , Karenina Osorto Cynthia , Reynoso Ricardo , Rhie Young-Jun , Toro-Ramos Martín

Background: The ACTION Teens study aimed to identify attitudes, behaviours and perceptions among adolescents living with obesity (ALwO), caregivers of ALwO (CGs) and healthcare professionals (HCPs) who treat ALwO. This subanalysis assessed the mental well-being and self-esteem of ALwO.Methods: ACTION Teens was a global, cross-sectional study (NCT05013359) that surveyed 5275 ALwO (aged 12–<18 years), 5389 CGs and...

hrp0095p1-67 | Fat, Metabolism and Obesity | ESPE2022

Effect of unawareness of obesity on perceptions of obesity and food/diet among adolescents living with obesity and their caregivers: subanalysis from the ACTION Teens global study

Bereket Abdullah , A. Baur Louise , Bin-Abbas Bassam , Chen Walter , Fernández-Aranda Fernando , Garibay Nieto Nayely , C.G. Halford Jason , Pedro López Siguero Juan , Maffeis Claudio , Mooney Vicki , Karenina Osorto Cynthia , Reynoso Ricardo , Rhie Young-Jun , Toro-Ramos Martín

Background: This subanalysis of the ACTION Teens study aimed to explore perceptions of obesity and food/diet among adolescents living with obesity (ALwO) and caregivers of ALwO (CGs) who were unaware of their/their child’s obesity.Methods: The global, cross-sectional ACTION Teens survey study (NCT05013359) assessed perceptions, attitudes and behaviours among 5275 ALwO (aged 12–<18 years), 5389 CGs and 2323...

hrp0092fc5.6 | Thyroid | ESPE2019

Homozygous Loss-of-Function Mutation in the SLC26A7 Gene Coding a Novel Iodide Transporter Causes Goitrous Congenital Hypothyroidism

Suzuki Atsushi , Ishii Jun , Yoshida Aya , Yamguchi Naoya , Tanaka Tatsushi , Aoyama Kohei , Tateyama Michihiro , Chen I-Shan , Kubo Yoshihiro , Kimura Toru , Yazawa Takuya , Arimasu Yu , Kamma Hiroshi , Saitoh Shinji , Mizuno Haruo

Introduction: Iodide transport in the thyroid is crucial for thyroid hormone synthesis. A homozygous loss-of-function mutation in the SLC26A4gene coding an iodide transporter located at the apical side in the thyroid follicular cells causes Pendred syndrome accompanied with goitrous congenital hypothyroidism (CH) and sensorineural deafness. However, about half of patients with Pendred syndrome demonstrate normal thyroid function. This indicates anothe...

hrp0092fc15.2 | Late Breaking Abstracts | ESPE2019

HDAC4 Mutations Cause Diabetes and Induce β-Cell FoxO1 Nuclear Exclusion

Gong Maolian , Yu Yong , Vuralli Dogus , Fröhler Sebastian , Kühnen Peter , Du Bois Philipp , Zhang Jingjing , Hussain Khalid , Fielitz Jens , Jia Shiqi , Chen Wei , Raile Klemens

Background: Studying patients with rare Mendelian diabetes has highlighted molecular mechanisms regulating β-cell pathophysiology. Previous, experimental studies have shown that Class IIa histone deacetylases (HDAC4, 5, 7, and 9) modulate mammalian pancreatic endocrine cell differentiation, function and finally glucose homeostasis.Methods: We performed exome sequencing in one adolescent boy with non-autoimmune di...

hrp0092p2-36 | Bone, Growth Plate and Mineral Metabolism | ESPE2019

A 10-year-old Girl with Primary Hypoparathyroidism and Systemic Lupus Erythematosus (SLE)

Borysewicz-Sanczyk Hanna , Sawicka Beata , Michalak Justyna , Wójtowicz Jerzy , Dobrenko Elzbieta , Konstantynowicz Jerzy , Kemp Elizabeth , Thakker Rajesh , Allgrove Jeremy , Black Sarah , Chen Shu , Furmaniak Jadwiga , Rees Smith Bernard , Bossowski Artur

Introduction: Parathyroid Hormone (PTH) is one of the principal regulatory hormones for calcium and phosphate homeostasis. Reduced PTH concentration in hypoparathyroidism is characterised by hypocalcaemia and hyperphosphataemia.Case Presentation: We report a ten-year-old girl who was admitted to the Department of Paediatrics, Endocrinology, Diabetology with Cardiology due to repeated seizures, hypoalcaemia with suspected...

hrp0089fc7.3 | Fetal, Neonatal Endocrinology and Metabolism | ESPE2018

Diazoxide-Induced Pulmonary Hypertension: UK Multicentre Retrospective Study on the Risk Factors, Monitoring Approach and Management Recommendations

Chen Suet Ching , Dastamani Antonia , Pintus Donatella , Yau Daphne , Aftab Sommayya , Bath Louise , Swinburne Craig , Hunter Lindsey , Giardini Alessandro , Christov Georgi , Senniappan Senthil , Banerjee Indraneel , Shaikh Guftar , Shah Pratik

Objectives: Diazoxide is first line treatment for hypoglycaemia due to hyperinsulinaemic hypoglycaemia (HH). However, the FDA has raised serious concerns regarding diazoxide-induced pulmonary hypertension (PH) in 2015. Although sporadic cases of PH have been reported, no HH cohort has been systematically characterised to understand severity and risk factors for diazoxide-induced PH.Methods: To investigate the onset, progress and associated factors in PH,...

hrp0089fc10.1 | Late Breaking | ESPE2018

Burosumab Improved Rickets, Phosphate Metabolism, and Clinical Outcomes Compared to Conventional Therapy in Children with X-Linked Hypophosphatemia (XLH) – A Randomized Controlled Phase 3 Study

Nilsson Ola , Whyte Michael P. , Imel Erik A. , Munns Craig , Portale Anthony A. , Ward Leanne , Simmons Jill H. , Padidela Raja , Namba Noriyuki , Cheong Hae Il , Mao Meng , Skrinar Alison , Chen Chao-Yin , Martin Javier San , Glorieux Francis

In children with XLH, high circulating levels of FGF23 cause hypophosphatemia with consequent rickets, skeletal deformities, and growth impairment. Conventional therapy consists of multiple daily doses of oral phosphate and active vitamin D (Pi/D). Burosumab is a fully human monoclonal antibody against FGF23 indicated for the treatment of XLH. In the active-control study CL301 (NCT02915705), 61 children with XLH (1–12 years old) were randomized (1:1) to receive subcutaneo...

hrp0086ha1 | KCNQ1 Mutations Cause Both Neonatal Diabetes and Hyperinsulinemic Hypoglycaemia of Infancy | ESPE2016

KCNQ1 Mutations Cause Both Neonatal Diabetes and Hyperinsulinemic Hypoglycaemia of Infancy

Liang Lei , Jia Shiqi , Frohler Sebastian , Kuhnen Peter , Blankenstein Oliver , Krill Winfried , Khodaverdi Semik , Cao Aidi , Hummel Oliver , Elbarbary Nancy , Hussain Khalid , Voelkl Jacob , Chen Wei , Gong Maolian , Raile Klemens

Background: Mutations in genes involved in insulin secretion or regulation of β cell identity cause both persistent neonatal diabetes (PND) and hyperinsulinemic hypoglycemia of infancy (HHI) pinpointing shared pathogenic mechanisms. KCNQ1 encodes a potassium channel protein, Kv7.1, which is a voltage-gated potassium channel expressed in cardiac tissue, pancreas, inner ear neurons, and other tissues. Variants in or nearby to KCNQ1 were linked t...