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Cognitive, Neurological, and Behavioral Features in Adults With KCNJ11 Neonatal Diabetes
Pamela Bowman1,2, Jacob Day3,2, Lorna Torrens4
1University of Exeter Medical School, Exeter, U.K. p.bowman@exeter.ac.uk.
Insights
Permanent neonatal diabetes mellitus (PNDM) caused by KCNJ11 mutations leads to lasting central nervous system (CNS) issues in adults. These neurological deficits persist despite treatment and significantly impact patients, unlike those with INS mutations.
Area of Science:
- Endocrinology
- Neuroscience
- Genetics
Background:
- Permanent neonatal diabetes mellitus (PNDM) is a rare genetic disorder affecting insulin secretion.
- KCNJ11 mutations are a common cause of PNDM, often associated with developmental issues.
- The long-term impact of KCNJ11 mutations on the adult central nervous system (CNS) remains poorly understood.
Purpose of the Study:
- To characterize the CNS features in adults with KCNJ11-PNDM.
- To compare these features with those in adults with INS-PNDM.
- To investigate the functional impact of KCNJ11 mutations on the adult brain.
Main Methods:
- Neurological examination and standardized neuropsychological testing were performed on adults with PNDM due to KCNJ11 (n=8) or INS (n=4) mutations.
- Brain MRI scans were conducted on four individuals from each group.
- Test scores were converted to Z-scores, and outcomes were compared between the KCNJ11 and INS mutation groups.
Main Results:
- Seven of eight individuals with KCNJ11 mutations showed abnormal neurological findings, including motor sequencing deficits.
- All KCNJ11 mutation carriers experienced developmental delays and/or required educational support.
- Individuals with KCNJ11 mutations had significantly lower IQs (median 76 vs. 111 for INS), impaired attention, working memory, and perceptual reasoning, with half exhibiting autism spectrum disorder features. No structural brain abnormalities were found on MRI.
Conclusions:
- KCNJ11 PNDM is linked to specific CNS features that persist into adulthood.
- These neurological deficits are independent of diabetes duration and sulfonylurea treatment effectiveness.
- The CNS features associated with KCNJ11 mutations represent a significant long-term burden for affected individuals.
Objective:
Central nervous system (CNS) features in children with permanent neonatal diabetes (PNDM) due to KCNJ11 mutations have a major impact on affected families. Sulfonylurea therapy achieves outstanding metabolic control but only partial improvement in CNS features. The effects of KCNJ11 mutations on the adult brain and their functional impact are not well understood. We aimed to characterize the CNS features in adults with KCNJ11 PNDM compared with adults with INS PNDM.
Research Design And Methods:
Adults with PNDM due to KCNJ11 mutations (n = 8) or INS mutations (n = 4) underwent a neurological examination and completed standardized neuropsychological tests/questionnaires about development/behavior. Four individuals in each group underwent a brain MRI scan. Test scores were converted to Z scores using normative data, and outcomes were compared between groups.
Results:
In individuals with KCNJ11 mutations, neurological examination was abnormal in seven of eight; predominant features were subtle deficits in coordination/motor sequencing. All had delayed developmental milestones and/or required learning support/special schooling. Half had features and/or a clinical diagnosis of autism spectrum disorder. KCNJ11 mutations were also associated with impaired attention, working memory, and perceptual reasoning and reduced intelligence quotient (IQ) (median IQ KCNJ11 vs. INS mutations 76 vs. 111, respectively; P = 0.02). However, no structural brain abnormalities were noted on MRI. The severity of these features was related to the specific mutation, and they were absent in individuals with INS mutations.
Conclusions:
KCNJ11 PNDM is associated with specific CNS features that are not due to long-standing diabetes, persist into adulthood despite sulfonylurea therapy, and represent the major burden from KCNJ11 mutations.
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