Completed Diabetes, Hormones & Metabolism Pregnancy, Children & Inherited Conditions

Pre-clinical development of a novel oral therapy for hyperinsulinemic hypoglycaemia

In plain English

AI plain-English summary

Newborns with a rare disease called Congenital Hyperinsulinism cannot stop producing insulin, causing their blood sugar to crash to dangerously low levels within hours of birth. This matters because these repeated, severe hypoglycaemic episodes can permanently damage a baby’s developing brain, leading to lifelong learning disabilities and other neurological problems. Current treatments are limited: some require major surgery to remove most of the pancreas, while others are difficult to administer or have serious side effects. There is no safe, easy-to-use oral therapy available. This project brings together a drug discovery company, a university, and a specialist children’s hospital to develop a pill that could be taken by mouth to safely control insulin levels. If successful, the research will produce a molecule ready for clinical trials—not just for Congenital Hyperinsulinism, but also for other forms of intractable hypoglycaemia, including in newborns, patients who have had gastric bypass surgery, and people with insulin-secreting tumours. A clinically ready oral therapy would transform care for these patients, replacing invasive procedures with a simple daily tablet that could prevent brain damage from the first days of life.

View original technical description
Congenital Hyperinsulinism is a rare neonatal disease presenting severe hypoglycaemia associated with poor clinical outcomes and long-term neurodisability. The support of the Technology Strategy Board will enable Heptares, in collaboration with the University of Manchester and Great Ormond Street Hospital, to carry out the pre-clinical development of a novel safe, effective and orally available treatment for Congenital Hyperinsulinsm. A succesful outcome will provide a clinically ready molecule with anticipated additional benefits in other areas associated with intractable hypoglycaemia; including neonatal hypoglycaemia, hypoglycaemia occurring as a consequence of gastric bypass surgery and insulinoma-associated hypoglycaemia. .

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Related Research

Grants with similar aims, by meaning.

Title: Understanding the molecular mechanisms of hyperinsulinaemic hypoglycaemia and developing novel therapies
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Bioengineering a cell-based cure for type 1 diabetes
An open-label, multicentre, randomised, single-period, parallel design study to assess the effect of closed loop insulin delivery from onset of type 1 diabetes in youth on residual beta cell function compared to standard insulin therapy (CLOuD)
Development of Novel Therapeutic Agents to Enhance Insulin Secretion

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