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Early onset epileptic encephalopathy or genetically determined encephalopathy with early onset epilepsy? Lessons
Paolo Curatolo1, Eleonora Aronica2, Anna Jansen3
1Systems Medicine Department, Child Neurology and Psychiatry Unit, Tor Vergata University Hospital of Rome, Italy.
Insights
Tuberous sclerosis complex (TSC) seizures may directly cause encephalopathy. Genetic mutations in TSC lead to mTOR overactivation, altering brain development and potentially causing early, refractory seizures and neurodevelopmental deficits.
Area of Science:
- Neuroscience
- Genetics
- Developmental Biology
Background:
- Tuberous sclerosis complex (TSC) is linked to early, refractory seizures and intellectual disability.
- The causal role of seizures in TSC-related encephalopathy remains unclear.
Purpose of the Study:
- To review evidence on the relationship between seizures and encephalopathy in TSC.
- To explore the underlying mechanisms of neurodevelopmental deficits in TSC.
Main Methods:
- Summary of a European TSC workshop.
- Review of experimental and clinical evidence.
Main Results:
- TSC gene mutations activate mammalian target of Rapamycin (mTOR).
- mTOR overactivation causes cellular changes (cytomegalic neurons, altered synaptogenesis, excitation/inhibition imbalance).
- Early developmental trajectory alterations in TSC are often missed.
Conclusions:
- mTOR activation is a likely substrate for early seizures and encephalopathy in TSC.
- Encephalopathy in TSC may have a genetic basis, with mTOR playing a direct role.
Background:
In tuberous sclerosis complex (TSC) a relationship has been shown between early and refractory seizures and intellectual disability. However, it is uncertain whether epilepsy in TSC is simply a marker in infants who are destined to develop an encephalopathic process or if seizures play a causal role in developing an encephalopathy.
Methods:
This paper summarizes the key points discussed during a European TSC workshop held in Rome, and reviews the experimental and clinical evidence in support of the two theories.
Results/Conclusion:
There are many factors that influence the appearance of both early seizure onset and the encephalopathy resulting in neurodevelopmental deficits. Experimental studies show that as a consequence of the TSC genes mutation, mammalian target of Rapamycin (mTOR) overactivation determines an alteration in cellular morphology with cytomegalic neurons, altered synaptogenesis and an imbalance between excitation/inhibition, thus providing a likely neuroanatomical substrate for the early appearance of refractory seizures and for the encephalopathic process. At the clinical level, early signs of altered developmental trajectories are often unrecognized before 12 months of age. Evidence from experimental research shows that encephalopathy in TSC might have a genetic cause, and mTOR activation caused by TSC gene mutation can be directly responsible for the early appearance of seizures and encephalopathy.
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