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Long-Term Sulfonylurea Response in ABCC8 Neonatal Diabetes (SuResponsSUR)

Long-term Sulfonylurea Response and Glucose Control After Switching From Insulin in Children With Diabetes Due to ABCC8 (SUR1) Mutations

Status
UNKNOWN
Phases
Phase 4
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT02624830
Acronym
SuResponsSUR
Enrollment
30
Registered
2015-12-08
Start date
2019-02-15
Completion date
2020-02-29
Last updated
2020-02-12

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Permanent Neonatal Diabetes Mellitus

Brief summary

The purpose of this study is to investigate long term response of sulfonylurea and glucose control in children with diabetes due to mutations in ABCC8 that have been switched from insulin injections to sulfonylurea tablets.

Detailed description

Neonatal diabetes mellitus is a rare, monogenic form of diabetes occurring during the first 6-9 months of life characterized by hyperglycemia requiring exogenous insulin therapy. The estimated incidence is 1 per 12000 newborns. Although homozygous or compound heterozygous mutations in the genes IPF1 or GCK were the first genetic causes of this disease to be identified, activating mutations in the KIR6.2 and sulfonylurea receptor 1 (SUR1) subunits of the pancreatic ATP-sensitive K+ channel, coded for by the genes KCNJ11 and ABCC8, have recently been identified as the major causes of both transient and permanent neonatal diabetes. In the normal pancreatic beta-cell, metabolism results in increased cellular ATP, which binds to KIR6.2. The potassium channel subsequently closes and hence depolarizes the membrane initiating insulin release via increased calcium entry. Conversely, increased cellular ADP acts on SUR1 to open the channel and prevent insulin release. Activating mutations in these channels reduces sensitivity to the inhibitory actions of ATP and increases sensitivity to the stimulatory actions of ADP. This causes the ATP-sensitive K+ channel to remain open, even in the presence of glucose, therefore preventing insulin release. Sulfonylureas act by an ATP-independent mechanism to close these channels even when mutations are present. Sulfonylureas result in insulin release and were therefore immediately considered and showed to be a potential treatment option in neonatal diabetes caused by mutations in these channels. The effective replacement of insulin treatment by high-dose sulfonylureas has been shown to be successful in 90% of patients with Kir6.2 mutations and 85% of patients with SUR1 mutations resulting in improved glycemic control. This dramatic effect of sulfonylurea is now standard, world-wide treatment in neonatal diabetes due to a mutation in either KCNJ11 or ABCC8. There is, however, far no information on long-term use of sulfonylurea in patients with KCNJ11 or ABCC8 mutations. The investigators have therefore initiated an international, multicenter, prospective study aiming to include some 75 patients aged from 9 years with a genetic diagnosis of diabetes due to a ABCC8 gene mutation identified by sequencing in Bergen, Norway; Exeter, U.K.; Paris, France or Rome, Italy. Most patients were referred based on membership in the International Society of Pediatric and Adolescent Diabetes. All of the patients attempted transfer from treatment with insulin to a sufficient dose of sulfonylureas. No other selection criteria were applied, and all patients were included when there was outcome data following the attempted transfer. The observation period was at least 9 years after commencing sulfonylureas in all patients. The study is conducted in accordance with the Declaration of Helsinki and informed consent has been obtained from all participating patients, with parental consent given on behalf of children.

Interventions

DRUGSulfonylurea

See Arm description.

Sponsors

University of Bergen
CollaboratorOTHER
University of Exeter
CollaboratorOTHER
Royal Devon and Exeter NHS Foundation Trust
CollaboratorOTHER
Institut National de la Santé Et de la Recherche Médicale, France
CollaboratorOTHER_GOV
Hôpital Necker-Enfants Malades
CollaboratorOTHER
University of Rome Tor Vergata
CollaboratorOTHER
Haukeland University Hospital
Lead SponsorOTHER

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
TREATMENT
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
9 Years to 95 Years
Healthy volunteers
No

Inclusion criteria

* Permanent diabetes due to a mutation in ABCC8 (SUR1) * Patients successfully transferred from insulin to sulfonylurea * Transferred to sulfonylurea treatment before November 1, 2006 (ie 9 years off insulin) * Willing and able to provide informed consent (parents if younger than 16 years of age)

Exclusion criteria

* Permanent diabetes not due to a mutation in ABCC8 (SUR1) * Patients not successfully transferred from insulin to sulfonylurea * Transferred to sulfonylurea treatment after November 1, 2006 (ie les than 9 years off insulin) * Not willing or able to provide informed consent (parents if younger than 16 years of age)

Design outcomes

Primary

MeasureTime frameDescription
Sulfonylurea efficacyWithin 13 years from interventionInsulin requirement with or without sulfonylurea treatment during the intervention
Metabolic controlWithin 13 years from interventionChange in HbA1c levels during the intervention

Secondary

MeasureTime frameDescription
Incidence of ketoacidosisWithin 13 years from interventionEpisodes per year of severe ketoacidosis (ISPAD definitions)
Development of diarrheaWithin 13 years from interventionChronic diarrhea with no clear cause
Development of discoloured teethWithin 13 years from interventionDiscoloured teeth with no clear cause
All cause mortalityWithin 13 years from interventionDeath of all causes
Insulin secretory response to oral glucoseWithin 13 years from interventionChange in increment of insulin and C-peptide after a standard oral glucose tolerance test tested at start of intervention and retested at end of the study
Sulfonylurea doseWithin 13 years from interventionChange in sulfonylurea dose (per kg and day, and absolute dose per day) from start of intervention and up till end of study
Insulin secretory response to a glucagon testWithin 13 years from interventionChange in increment of C-peptide and glucose after a standard glucagon test tested at start of intervention and retested at end of the study
Insulin secretory response to intravenous glucoseWithin 13 years from interventionChange in increment of insulin and C-peptide after a standard intravenous glucose tolerance test tested at start of intervention and retested at end of the study
Incidence of hypoglycemiaWithin 13 years from interventionEpisodes per year of severe hypoglycemia (ISPAD definitions)

Countries

Norway

Contacts

Primary ContactÅsta N Sulen
asta.sulen@student.uib.no004748214508
Backup ContactPernille Svalastoga, MD
pernille.svalastoga@helse-bergen.no004798443631

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026