hrp0086rfc10.6 | Perinatal Endocrinology | ESPE2016

Increased Islet Cell Neogenesis and Endocrine Cell Differentiation in Congenital Hyperinsulinism in Infancy

Hardwick Elise , Han Bing , Salomon-Estebanez Maria , Padidela Raja , Skae Mars , Craigie Ross , Cosgrove Karen , Banerjee Indi , Dunne Mark

Background: Congenital Hyperinsulinism in Infancy (CHI) is characterised by inappropriate insulin release. We currently attribute hypoglycaemia to β-cell dysfunction because of defects in the ion channel genes ABCC8 or KCNJ11. However, the CHI pancreas is also associated with inappropriate expression of foetal-like transcription factors and enhanced cell proliferation.Hypothesis: As the CHI pancreas bears similarities to the foetal pancreas, we hypo...

hrp0086p1-p555 | Perinatal Endocrinology P1 | ESPE2016

Islet of Langerhans in Congenital Hyperinsulinism in Infancy are Disrupted and with Decreased Expression of Collagen (IV) α1 Chain in Basement Membranes

Mal Walaa , Salomon-Estebanez Maria , Padidela Raja , Skae Mars , Craigie Ross , Rigby Lindsey , Cosgrove Karen , Banerjee Indi , Dunne Mark

Background: Congenital hyperinsulinism of infancy (CHI) is the most common cause of severe hypoglycaemia in children. Although CHI arises from mutations in KATP channels which lead to inappropriate insulin secretion, CHI it also is associated with marked changes in islet organization.Aims and objectives: Our aim was to investigate the structure and composition of the islet capsule in CHI and age-matched control tissue.Me...

hrp0084fc9.1 | Beta cell disorders | ESPE2015

Islet δ-Cells Contribute to the Pathobiology of Atypical Congenital Hyperinsulinism

Han Bing , Bourke Siobahn , Mohammad Zainab , Craigie Ross , Skae Mars , Cheeseman Edmund , Banerjee Indi , Cosgrove Karen , Dunne Mark

Background: Atypical forms of congenital hyperinsulinism in infancy (CHI-A) represent a novel subgroup of patients who present later in the neonatal period; have poor responses to medical intervention; an unremarkable histopathology and no known genetic cause of disease.Objective and hypotheses: To compare the expression profiles of insulin and somatostatin in islets from patients with CHI-A, diffuse CHI (CHI-D) and age-matched control tissue.<p clas...

hrp0084fc9.3 | Beta cell disorders | ESPE2015

Failure to Terminate Cell Proliferation Contributes to the Pathobiology of Congenital Hyperinsulinism in Infancy

Han Bing , Mohammad Zainab , Rigby Lindsey , Craigie Ross , Skae Mars , Padidela Raja , Cheesman Edmund , Cosgrove Karen , Banerjee Indi , Dunne Mark

Background: Diffuse congenital hyperinsulinism in infancy (CHI-D) mainly arises from mutations in KATP channel genes. In addition, there are also several reports of increased cell proliferation in CHI-D. We hypothesised that the higher rates of proliferation in CHI-D are as a consequence of failure to terminate proliferation in the neonatal period.Objective and hypotheses: To test this we examined the proliferative index (PI) of CHI-D tissue a...

hrp0086p1-p549 | Perinatal Endocrinology P1 | ESPE2016

Congenital Hyperinsulinism in Infancy: The Profiles of Insulin Secretory Granules are Markedly Different in Focal- and Diffuse β-Cells

Han Bing , Mohamed Zainab , Salomon-Estebanez Maria , Padidela Raja , Skae Mars , Craigie Ross , Rigby Lindsey , Cosgrove Karen , Banerjee Indi , Dunne Mark

Background: The mechanisms responsible for inappropriate insulin release from β-cells in congenital hyperinsulinism in infancy (CHI) have largely focused upon defects in KATP channels. Little is known about insulin biogenesis, the profiles of insulin in insulin-containing secretory granules or whether the impact of KATP channel defects is the same in diffuse- and focal disease.Objective and hypotheses: To define the ultrastruct...

hrp0084lbp-1258 | Late Breaking Posters | ESPE2015

A Distinct Population of Islet Cells Defines Diffuse Congenital Hyperinsulinism in Infancy but not Other Forms of the Disease

Han Bing , Newbould Melanie , Batra Gauri , Cheesman Edmund , Craigie Ross , Mohammad Zainab , Rigby Lindsey , Padidela Raja , Skae Mars , Mironov Aleksandr , Starborg Tobias , Kadler Karl , Cosgrove Karen , Banerjee Indraneel , Dunne Mark

Background/hypothesis: Congenital hyperinsulinism in infancy (CHI) mainly arises from mutations in ATP-sensitive potassium channel genes. However, the expression pattern of defects can be markedly diverse. In diffuse CHI (CHI-D) all islet cells express gene defects, whereas patients with focal CHI (CHI-F) only express defects in a localised region of islet cells due to loss of a maternally-imprinted locus. Here, we examined the properties of a novel population of CHI islet cel...