Literature DB >> 20149961

Sprouting in human temporal lobe epilepsy: excitatory pathways and axons of interneurons.

Zsófia Maglóczky1.   

Abstract

Changes of hippocampal GABAergic interneuronal circuits are known to play a central role in epileptogenesis. Fate of functionally different hippocampal interneuron types has been investigated in surgically removed hippocampi of therapy resistant human TLE patients. Perisomatic inhibitory cells containing parvalbumin are responsible for controlling the output of principal cells. Electron microscopic examination revealed that perisomatic innervation of the principal cells was preserved in both sclerotic and non-sclerotic samples, and the ratio of the initial segment synapses increased among the postsynaptic targets, which might give rise to an increased synchrony of granule cell firing. Calbindin-containing dendritic inhibitory cells are well preserved, and they terminate on other interneurons in larger proportion than in the control both in sclerotic and non-sclerotic cases. Substance P receptor-immunopositive cells possessed significantly larger numbers of dendritic branches in the epileptic CA1 region, and the synaptic input of their dendrites has notably increased, whereas the ratio of inhibitory and excitatory synaptic inputs has not changed. Our results suggest that an intense synaptic reorganization takes place in the epileptic hippocampus, including axonal sprouting of certain interneuron types, both in sclerotic and non-sclerotic tissue. Thus, axonal sprouting is a more general phenomenon of TLE than cell loss. Copyright 2010 Elsevier B.V. All rights reserved.

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Year:  2010        PMID: 20149961     DOI: 10.1016/j.eplepsyres.2010.01.002

Source DB:  PubMed          Journal:  Epilepsy Res        ISSN: 0920-1211            Impact factor:   3.045


  19 in total

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4.  Aberrant neuronal synaptic connectivity in CA1 area of the hippocampus from pilocarpine-induced epileptic rats observed by fluorogold.

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5.  Aging and excitotoxic stress exacerbate neural circuit reorganization in amyloid precursor protein intracellular domain transgenic mice.

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8.  The Brain Activity in Brodmann Area 17: A Potential Bio-Marker to Predict Patient Responses to Antiepileptic Drugs.

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Review 9.  Review: Hippocampal sclerosis in epilepsy: a neuropathology review.

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Journal:  Neuropathol Appl Neurobiol       Date:  2014-08       Impact factor: 8.090

10.  Variability of sclerosis along the longitudinal hippocampal axis in epilepsy: a post mortem study.

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Journal:  Epilepsy Res       Date:  2012-05-16       Impact factor: 3.045

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