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Published on: August 15, 2017
Expression of synaptic vesicle protein 2A in epilepsy-associated brain tumors and in the peritumoral cortex
Marjolein de Groot1, Sjoukje T Toering, Karin Boer
1Department Of Neurology, VU University Medical Center, PO Box 7057, 1007 MB Amsterdam, The Netherlands. marjolein.degroot@vumc.nl
Abstract:
Synaptic vesicle protein 2A (SV2A) has been identified as the binding site for the antiepileptic drug levetiracetam and is thought to decrease neuronal excitability. Since knockout of SV2A in mice leads to seizures, we hypothesized that a reduction in SV2A expression promotes seizure generation in epilepsy-associated brain tumors. We compared the SV2A expression and distribution in surgically removed tumor tissue (n = 63) and peritumoral cortex (n = 31) of patients with glial and glioneuronal tumors to normal control cortex obtained at autopsy in nonbrain tumor patients (n = 6). Additionally, we compared the SV2A expression and distribution in tumor patients with epilepsy (n = 39) with SV2A expression in tumor patients without epilepsy (n = 24). Immunohistochemistry in control cortex demonstrated strong and diffuse SV2A immunoreactivity (IR) throughout all cortical layers. Similar strong SV2A IR (with the same diffuse distribution pattern) was observed in the peritumoral cortical specimens in both patients with and without epilepsy. Modest SV2A IR was observed within the tumor area. The SV2A-positive cells detected within the tumor area were mainly entrapped neurons. Oligodendrogliomas and glioneuronal tumors displayed variable SV2A neuropil staining. In ganglioglioma (GG), strong SV2A IR was present along the dysplastic neuronal cell borders and processes. In both GG and dysembryoplastic neuroepithelial tumors, SV2A IR was occasionally observed within the neuronal perikarya. We found no differences in SV2A expression in the peritumoral cortex between the patients with and without epilepsy, which suggests that the role of SV2A in epileptogenesis in patients with glial tumors is questionable. The distinct pattern of SV2A IR in glioneuronal tumors suggests a redistribution of SV2A.
Insights
Synaptic vesicle protein 2A (SV2A) expression was examined in brain tumors. Reduced SV2A in tumors did not correlate with epilepsy, questioning its role in seizure generation in these patients.
Area of Science:
- Neuroscience
- Oncology
- Pathology
Background:
- Synaptic vesicle protein 2A (SV2A) is the target of levetiracetam and may reduce neuronal excitability.
- SV2A knockout in mice causes seizures, suggesting its role in epilepsy.
- Epilepsy is common in patients with brain tumors, but the underlying mechanisms are not fully understood.
Purpose of the Study:
- To investigate SV2A expression and distribution in epilepsy-associated brain tumors.
- To compare SV2A levels in tumor tissue and peritumoral cortex between patients with and without epilepsy.
- To explore the potential role of SV2A reduction in epileptogenesis within brain tumors.
Main Methods:
- Immunohistochemistry was used to assess SV2A expression in surgically removed tumor and peritumoral cortical tissues.
- Normal brain cortex from non-tumor patients served as controls.
- SV2A expression was compared between tumor patients with and without epilepsy.
Main Results:
- SV2A was diffusely expressed in normal and peritumoral cortex.
- Tumor tissue showed modest SV2A immunoreactivity, primarily in entrapped neurons.
- No significant difference in peritumoral SV2A expression was found between epileptic and non-epileptic patients.
- Glioneuronal tumors exhibited distinct SV2A patterns, suggesting redistribution.
Conclusions:
- SV2A expression in the peritumoral cortex does not differ between patients with and without epilepsy.
- The role of SV2A in epileptogenesis associated with glial tumors is uncertain.
- Glioneuronal tumors show altered SV2A distribution, indicating potential tumor-specific mechanisms.
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