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The Tuberous Sclerosis 2000 Study: presentation, initial assessments and implications for diagnosis and management
John R W Yates1, Cathy Maclean, J Nicholas P Higgins
1Department of Medical Genetics, University of Cambridge, Cambridge, UK. jrwy1@cam.ac.uk
Insights
Tuberous sclerosis (TS) diagnosis is improved by genetic testing. Early presentation and prenatal detection are increasing, highlighting the need for updated diagnostic and management guidelines for affected children.
Area of Science:
- Genetics
- Neurology
- Pediatrics
Background:
- Tuberous sclerosis (TS) is a genetic disorder affecting multiple organs.
- The Tuberous Sclerosis 2000 Study is the first comprehensive longitudinal investigation into TS.
- Understanding prognostic factors is crucial for managing TS.
Purpose of the Study:
- To identify factors influencing the prognosis of tuberous sclerosis.
- To report the mode of presentation and initial findings in a cohort of children with TS.
Main Methods:
- Evaluation of children aged 0-16 years newly diagnosed with TS in the UK.
- Clinical assessment, genetic testing (TSC1/TSC2 mutations), and various imaging modalities (ultrasound, echocardiography, CT, MRI).
Main Results:
- 125 children with TS were studied; 91% met clinical criteria, and 9% had confirmed mutations.
- Prenatal diagnosis occurred in 17% of cases.
- Seizures presented in 62%, epilepsy in 91%, and intellectual disability in 65%.
- High detection rates for TS abnormalities were observed via cranial MRI (91%) and CT (83%).
Conclusions:
- Genetic testing is valuable for confirming TS diagnosis.
- Increased prenatal and early-infancy presentations necessitate re-evaluation of EEG monitoring and anticonvulsant therapy initiation criteria.
Aims:
The Tuberous Sclerosis 2000 Study is the first comprehensive longitudinal study of tuberous sclerosis (TS) and aims to identify factors that determine prognosis. Mode of presentation and findings at initial assessments are reported here.
Methods:
Children aged 0-16 years newly diagnosed with TS in the UK were evaluated.
Results:
125 children with TS were studied. 114 (91%) met clinical criteria for a definite diagnosis and the remaining 11 (9%) had pathogenic TSC1 or TSC2 mutations. In families with a definite clinical diagnosis, the detection rate for pathogenic mutations was 89%. 21 cases (17%) were identified prenatally, usually with abnormalities found at routine antenatal ultrasound examination. 30 cases (24%) presented before developing seizures and in 10 of these without a definite diagnosis at onset of seizures, genetic testing could have confirmed TS. 77 cases (62%) presented with seizures. Median age at recruitment assessment was 2.7 years (range: 4 weeks-18 years). Dermatological features of TS were present in 81%. The detection rate of TS abnormalities was 20/107 (19%) for renal ultrasound including three cases with polycystic kidney disease, 51/88 (58%) for echocardiography, 29/35 (83%) for cranial CT and 95/104 (91%) for cranial MRI. 91% of cases had epilepsy and 65% had intellectual disability (IQ<70).
Conclusions:
Genetic testing can be valuable in confirming the diagnosis. Increasing numbers of cases present prenatally or in early infancy, before onset of seizures, raising important questions about whether these children should have EEG monitoring and concerning the criteria for starting anticonvulsant therapy.
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