| Literature DB >> 21423407 |
Guilherme Testa Silva1, Jean-Vincent Le Bé, Imad Riachi, Tania Rinaldi, Kamila Markram, Henry Markram.
Abstract
A single intra-peritoneal injection of valproic acid (VPA) on embryonic day (ED) 11.5 to pregnant rats has been shown to produce severe autistic-like symptoms in the offspring. Previous studies showed that the microcircuitry is hyperreactive due to hyperconnectivity of glutamatergic synapses and hyperplastic due to over-expression of NMDA receptors. These changes were restricted to the dimensions of a minicolumn (<50 μm). In the present study, we explored whether Long Term Microcircuit Plasticity (LTMP) was altered in this animal model. We performed multi-neuron patch-clamp recordings on clusters of layer 5 pyramidal cells in somatosensory cortex brain slices (PN 12-15), mapped the connectivity and characterized the synaptic properties for connected neurons. Pipettes were then withdrawn and the slice was perfused with 100 μM sodium glutamate in artificial cerebrospinal fluid in the recording chamber for 12 h. When we re-patched the same cluster of neurons, we found enhanced LTMP only at inter-somatic distances beyond minicolumnar dimensions. These data suggest that hyperconnectivity is already near its peak within the dimensions of the minicolumn in the treated animals and that LTMP, which is normally restricted to within a minicolumn, spills over to drive hyperconnectivity across the dimensions of a minicolumn. This study provides further evidence to support the notion that the neocortex is highly plastic in response to new experiences in this animal model of autism.Entities:
Keywords: autism spectrum disorders; layer 5 pyramidal cells; long-term microcircuit plasticity; microcircuit plasticity; neocortex; synaptic plasticity; valproic acid
Year: 2009 PMID: 21423407 PMCID: PMC3059606 DOI: 10.3389/neuro.19.001.2009
Source DB: PubMed Journal: Front Synaptic Neurosci ISSN: 1663-3563
Figure 1Evoked emergence of connections following 12 h network stimulation. (A) Recording of layer 5 pyramidal cells (PC) using multiple whole-cell patch-clamp. Direct synaptic connections were examined by eliciting short trains of precisely timed action potentials at 30 Hz. (B) After 12 h of network stimulation by sodium glutamate. The red trace indicates a disappearance, blue and purple traces indicate emergences, grey and black traces indicate stable connections (Le Be and Markram, 2006). (C) Cluster of four cells viewed by infra-red differential interference contrast microscope. (Upper right) Neurons during first patch. (Lower right) Neurons after 12 h of glutamate stimulation. (D) Mesh rendering on camera lucida of anatomical reconstructions of two neurons where a connection appeared after evoking with sodium glutamate. (Red Dots): Putative synaptic contact sites.
Figure 2Connectivity indices. (A1) Hyperconnectivity for inter-somatic distances smaller than 50 μm. (A2) Hyperplasticity for inter-somatic distances between 50 and 200 μm. (B1) Connection probability in (25 μm) discrete zones, before sodium glutamate perfusion. (B2) Connection probability in (25 μm) discrete zones, after sodium glutamate perfusion. (C1) Emergence index, showing higher tendency for appearances of new connections at somata separation between 50 and 200 μm. (C2) Emergence index calculated along (25 μm) discrete inter-soma distances, showing significant difference at somatic separation between 75 and 100 μm.
Figure 3Changes in synaptic efficacy. (A) (Upper) Trains of EPSPs evoked by somatic current injection before and after 12 h of sodium glutamate perfusion of control population. (Lower) Trains of EPSPs evoked by somatic current injection before and after 12 h of glutamate perfusion of treated population. (B) EPSP maxima scattered around unitary line showing trend for voltage rescaling after glutamate perfusion. (C) Absolute values of synaptic efficacy (A), before and after network stimulation by sodium glutamate. (D) Cumulative probability histogram of ΔPr = Prafter − Prbefore. Highlighted points are those at 50% and correspond to the mean values for ΔPr. No significant difference in Pr between the two groups. (E) Cumulative probability histogram of ΔA = Aafter − Abefore. Highlighted points are those at 50% and correspond to the mean values for ΔA. Global increase in synaptic efficacy significantly higher for treated population.