hrp0082p1-d1-182 | Perinatal and Neonatal Endocrinology | ESPE2014

Clinical and Histological Heterogeneity of Congenital Hyperinsulinism Due to Paternally Inherited Heterozygous ABCC8/KCNJ11 Mutations

Arya Ved Bhushan , Guemes Maria , Nessa Azizun , Alam Syeda , Shah Pratik , Gilbert Clare , Senniappan Senthil , Flanagan Sarah E , Ellard Sian , Hussain Khalid

Context: Congenital hyperinsulinism (CHI) has two main histological types – diffuse and focal. Diffuse CHI is due to recessive or dominant mutations in ABCC8/KCNJ11. Focal disease is due to somatic maternal allele loss of 11p15 in pancreatic β-cells along with paternally inherited germline ABCC8/KCNJ11 mutation. Fluorine-18 L-3, 4-dihydroxyphenylalanine positron emission tomography computerized tomography (18F DOPA–PET...

hrp0082p2-d3-354 | Diabetes (2) | ESPE2014

An Infant with a Novel Kir6.2 Mutation Causing Neonatal Diabetes and Unexplained Lack of Response to Sulphonylurea

O'Connell Susan M , Mc Donald Aoife , O'Toole Norma , Bradfield Anne , Bradley Maura , Hattersley Andrew , Ellard Sian , Proks Peter , Mattis Katia K , Ashcroft Frances , O'Riordan Stephen M P

Background: Neonatal diabetes (NDM) is defined as diabetes developing before 6 months of age, affecting one in 100 000 live births. Permanent NDM is diagnosed in the first 6 months of life with no remission. The majority have a mutation in the ATP-sensitive potassium (KATP) channel (KCNJ11 in 31%, ABCC8 in 13%). Autosomal dominant and recessive forms are described. The majority of patients with NDM caused by KATP mutations respond to sulphonylureas.<p...

hrp0082p3-d3-728 | Diabetes (2) | ESPE2014

The Result of Sulphonylureas Treatment in Patients with Neonatal Diabetes Mellitus due to kcnj11/abcc8 Gene Mutations in Vietnam

Bich Ngoc Can Thi , Chi Dung Vu , Phuong Thao Bui , Ngoc Khanh Nguyen , Phu Dat Nguyen , Ellard Sian , Craig Maria , Thi Hoan Nguyen

Background: Neonatal diabetes may be defined as hyperglycemia diagnosed within the first 6 months of life which is permanent neonatal diabetes or transient neonatal diabetes. They can result from some gene mutations such as KCNJ11, ABCC8, INS, GCK, … In there, the most common cause of neonatal diabetes mellitus is associated with activating mutations in the KCNJ11 gene, which encodes Kir6.2-a subunit of the ATP-sensitive potassium channel (KATP) of the β cell and AB...

hrp0084p1-30 | Diabetes | ESPE2015

A Novel Mutation in the abcc8 Gene Causing a Variable Phenotype of Impaired Glucose Metabolism in the Same Family

Maines Evelina , Hussain Khalid , Flanagan Sarah E , Ellard Sian , Piona Claudia , Morandi Grazia Grazia , Ben Sarah Dal , Cavarzere Paolo , Antoniazzi Franco Franco , Gaudino Rossella

Background: Dominantly acting loss-of-function mutations in the ABCC8 gene, encoding the sulfonylurea receptor 1 (SUR1) subunit of the β-cell potassium channel (KATP), are usually responsible for mild diazoxide-responsive congenital hyperinsulinism (CHI). In rare cases dominant ABCC8 mutations can cause diffuse diazoxide-unresponsive CHI. Recent reports suggest that medically responsive CHI due to a dominant ABCC8 mutation may confer an increase...

hrp0084p3-1061 | Hypo | ESPE2015

Clinical Characteristics and Molecular Analysis of Turkish Patients with Congenital Hyperinsulinism: a Single-Centre Experience with 15 Cases

Agladioglu Sebahat Yilmaz , Aycan Zehra , Cetinkaya Semra , Erdeve Senay Savas , Sagsak Elif , Keskin Meliksah , Kurnaz Erdal , Flanagan Sarah E , Ellard Sian , Hussain Khalid

Objective: Congenital hyperinsulinism (CHI) is the most common cause of hypoglycaemia in children. Early identification and management is crucial to prevent irreversible brain damage. CHI has a heterogeneous clinical presentation, histology and molecular biology. We aim to discuss the clinical characteristics and genotype–phenotype correlations of Turkish CHI patients from a single centre.Design and methods: A total of 15 patients with CHI were recr...

hrp0084p3-1063 | Hypo | ESPE2015

Genotype–Phenotype Associations in 90 Children with Congenital Hyperinsulinism

Melikyan Maria , Christesen Henrik , Petryakina Elena , Tulpakov Anatoly , Tihonovich Julia , Stepanov Alexey , Kareva Maria , Flanagan Sarah , Ellard Sian , Brusgaard Klaus , Peterkova Valentina , Hussain Khalid

Background: Congenital hyperinsulinism (CHI) is a common cause of hypoglycaemia in neonates, infants and children. CHI is a heterogeneous disease in terms of clinical presentation, genetics and histology.Objective and hypotheses: The aim of this study was to describe the clinical characteristics, genotype–phenotype correlations and treatment outcome of Russian patients with CHI.Method: A total of 90 children with CHI were iden...

hrp0084p3-1078 | Hypo | ESPE2015

Long Acting Somatostatin Analogues in the Management of Congenital Hyperinsulinism in Cases with Poor Compliance to Conventional Therapy

Demirbilek Huseyin , Oncel Kahraman , Ozbek Mehmet Nuri , Deniz Ahmet , Baysal Birsen , Arya Ved Bhushan , Flanagan Sarah E , Ellard Sian , Hussain Khalid

Background: Congenital hyperinsulinism (CHI), is the most common cause of severe hypoglycaemia in neonates and infants. The cornerstone of medical therapy is diazoxide. Octreotide, a somatostatin analogue, is the second therapeutic option in diazoxide unresponsive cases. However, due to its short half-life and requirement of multiple daily doses, lack of compliance may cause recurring hypoglycaemia and related neurological deficits, particularly for the family with low socioec...

hrp0092p1-27 | Diabetes and Insulin | ESPE2019

A Case of Neonatal Diabetes with Hyperferritinemia: A Distal PTF1A Enhancer Mutation

Arslan Gülçin , ACAR Sezer , Nalbantoglu Özlem , Köprülü Özge , Özkaya Beyhan , De Franco Elisa , Ellard Sian , Özkan Behzat

Introduction: Neonatal diabetes, defined as the onset of diabetes within the first six months of life, is very rare disease. Several genetic factors caused to neonatal disease have been identified to date. PTF1A (pancreatic transcription factor 1a) play a key role in early pancreas development and cerebellar neurogenesis. Biallelic mutations in PTF1A have been reported in patients with pancreatic and cerebellar agenesis, whereas mutations loc...

hrp0092p1-207 | Fetal, Neonatal Endocrinology and Metabolism (to include Hypoglycaemia) (1) | ESPE2019

Clinical characteristics and long term follow up of 17 patients with permanent neonatal diabetes due to PTF1A distal enhancer mutations

Demirbilek Huseyin , Cayir Atilla , DeFranco Elisa , Kor Yilmaz , Yildiz Melek , Yildirim Ruken , Baran Riza Taner , Demiral Meliha , Haliloglu Belma , Flanagan Sarah E , Ellard Sian , Hussain Khalid , Ozbek Mehmet Nuri

Background: Pancreas transcription factor-1 alpha (PTF1A), encoded by the PTF1A gene, is a beta helix loop(bHLH) protein which involved in the development of the pancreas and cerebellar neurogenesis. Although mutations of PTF1A cause permanent neonatal diabetes(PNDM), pancreas agenesis and cerebellar agenesis, PTF1A enhancer mutations reported causing PNDM and isolated pancreas agenesis. In the present study, we evaluate the phenotyp...

hrp0089p2-p071 | Diabetes &amp; Insulin P2 | ESPE2018

Clinical Details, Molecular Genetic Analysisand Clinical Pheonotype Correlation of 14 Patients with Neonatal Diabetes from The South India – A Single Centre Experience

Nagesh V Sri , Hattersley Andrew , Ellard Sian , Sethi Bipin , Franco Elisa De , Flanagan Sarah , Houghton Jayne , Venkateshwarlu M , Parekh Harsh , Dukle Vaibhav , Kelwade Jayant , Naseem Altaf , Kanithi Ravishankar , Nalli Ravi Kumar

Background: Neonatal diabetes mellitus (NDM) is a relatively rare form of monogenic diabetes and usually presents in the first 6–9 months of life. In this study, our objective was to report the clinical details, perform a detailed genetic analysis and acquire a clinical–phenotype correlation of our cohort.Materials and methods: NDM patients referred to SN Endocrine centre between period of Nov 2014 to April 2017 and patients under follow-up wit...