Although epilepsy is associated with a variety of abnormalities, exactly why some brain regions produce seizures and others do not is not known. We developed a method to identify cellular changes in human epileptic neocortex using transcriptional clustering. A paired analysis of high and low spiking tissues recorded in vivo from 15 patients predicted 11 cell-specific changes together with their 'cellular interactome'. These predictions were validated histologically revealing millimetre-sized 'microlesions' together with a global increase in vascularity and microglia. Microlesions were easily identified in deeper cortical layers using the neuronal marker NeuN, showed a marked reduction in neuronal processes, and were associated with nearby activation of MAPK/CREB signalling, a marker of epileptic activity, in superficial layers. Microlesions constitute a common, undiscovered layer-specific abnormality of neuronal connectivity in human neocortex that may be responsible for many 'non-lesional' forms of epilepsy. The transcriptional clustering approach used here could be applied more broadly to predict cellular differences in other brain and complex tissue disorders.
Predicting novel histopathological microlesions in human epileptic brain through transcriptional clustering.
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作者:Dachet Fabien, Bagla Shruti, Keren-Aviram Gal, Morton Andrew, Balan Karina, Saadat Laleh, Valyi-Nagy Tibor, Kupsky William, Song Fei, Dratz Edward, Loeb Jeffrey A
| 期刊: | Brain | 影响因子: | 11.700 |
| 时间: | 2015 | 起止号: | 2015 Feb;138(Pt 2):356-70 |
| doi: | 10.1093/brain/awu350 | ||
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