This is the final version of the article. Available from Springer Verlag via the DOI in this record.AIMS/HYPOTHESIS: The finding that patients with diabetes due to potassium channel mutations can transfer from insulin to sulfonylureas has revolutionised the management of patients with permanent neonatal diabetes. The extent to which the in vitro characteristics of the mutation can predict a successful transfer is not known. Our aim was to identify factors associated with successful transfer from insulin to sulfonylureas in patients with permanent neonatal diabetes due to mutations in KCNJ11 (which encodes the inwardly rectifying potassium channel Kir6.2). METHODS: We retrospectively analysed clinical data on 127 patients with neonatal diabe...
Permanent neonatal diabetes (PNDM) can result from activating heterozygous mutations in KCNJ11 gene,...
Background Patients with permanent neonatal diabetes usually present within the first three months o...
NOTE: THE SPECIAL CHARACTERS IN THIS ABSTRACT CANNOT BE DISPLAYED CORRECTLY ON THIS PAGE. PLEASE REF...
The finding that patients with diabetes due to potassium channel mutations can transfer from insulin...
The finding that patients with diabetes due to potassium channel mutations can transfer from insulin...
Article type: case reportThis is the author accepted manuscript.Final version available from Wiley v...
Background Permanent neonatal diabetes caused by mutations in the KCNJ11 gene may be managed with hi...
Permanent neonatal diabetes mellitus is most commonly caused by mutations in the ATP-sensitive potas...
PublishedCase ReportsJournal ArticleResearch Support, Non-U.S. Gov'tAIMS/HYPOTHESIS: Heterozygous ac...
KCNJ11 mutations cause permanent neonatal diabetes through pancreatic ATP-sensitive potassium channe...
A ctivating mutations in the KCJN11gene encoding in the ATP-sensitiveK channel (KATP channel) subun...
This is the author accepted manuscript. The final version is available from Elsevier via the DOI in ...
Permanent neonatal diabetes mellitus refers to diabetes that occurs before the age of 6 months and p...
OBJECTIVE - Neonatal diabetes can result from mutations in the Kir6.2 or sulfonylurea receptor 1 (SU...
Background KCNJ11 mutations cause permanent neonatal diabetes through pancreatic ATP-sensitive potas...
Permanent neonatal diabetes (PNDM) can result from activating heterozygous mutations in KCNJ11 gene,...
Background Patients with permanent neonatal diabetes usually present within the first three months o...
NOTE: THE SPECIAL CHARACTERS IN THIS ABSTRACT CANNOT BE DISPLAYED CORRECTLY ON THIS PAGE. PLEASE REF...
The finding that patients with diabetes due to potassium channel mutations can transfer from insulin...
The finding that patients with diabetes due to potassium channel mutations can transfer from insulin...
Article type: case reportThis is the author accepted manuscript.Final version available from Wiley v...
Background Permanent neonatal diabetes caused by mutations in the KCNJ11 gene may be managed with hi...
Permanent neonatal diabetes mellitus is most commonly caused by mutations in the ATP-sensitive potas...
PublishedCase ReportsJournal ArticleResearch Support, Non-U.S. Gov'tAIMS/HYPOTHESIS: Heterozygous ac...
KCNJ11 mutations cause permanent neonatal diabetes through pancreatic ATP-sensitive potassium channe...
A ctivating mutations in the KCJN11gene encoding in the ATP-sensitiveK channel (KATP channel) subun...
This is the author accepted manuscript. The final version is available from Elsevier via the DOI in ...
Permanent neonatal diabetes mellitus refers to diabetes that occurs before the age of 6 months and p...
OBJECTIVE - Neonatal diabetes can result from mutations in the Kir6.2 or sulfonylurea receptor 1 (SU...
Background KCNJ11 mutations cause permanent neonatal diabetes through pancreatic ATP-sensitive potas...
Permanent neonatal diabetes (PNDM) can result from activating heterozygous mutations in KCNJ11 gene,...
Background Patients with permanent neonatal diabetes usually present within the first three months o...
NOTE: THE SPECIAL CHARACTERS IN THIS ABSTRACT CANNOT BE DISPLAYED CORRECTLY ON THIS PAGE. PLEASE REF...