Difference between revisions of "Stimulating Hypothesis"

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==Stimulating Hypothesis==The stimulating hypothesis says that the imbalance between inhibitory and excitatory synaptic currents causes ASD.  A central component in this theory are the variants in Neuroligins and Neurexins that have been found in ASD probands.  Neuroligins and Neurexins are likely to be the centrally organizing melecules for excitatory glutamatergic and inhibitory GABAergic synapses in the mammalian brain.  Studies have shown that mutant mice with the R451C Nlgn3 mutation have increased GABAergic synapses and inhibitory currents.  In addition, MeCP2 knockout mice, Caps2 knowckout mice, mice exposed to prenatla valproate treatment, and many other models have imbalances of inhibition and excitation.<sup>1</sup>
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==Stimulating Hypothesis==
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The stimulating hypothesis says that the imbalance between inhibitory and excitatory synaptic currents causes ASD.  A central component in this theory are the variants in Neuroligins and Neurexins that have been found in ASD probands.  Neuroligins and Neurexins are likely to be the centrally organizing melecules for excitatory glutamatergic and inhibitory GABAergic synapses in the mammalian brain.  Studies have shown that mutant mice with the R451C Nlgn3 mutation have increased GABAergic synapses and inhibitory currents.  In addition, MeCP2 knockout mice, Caps2 knowckout mice, mice exposed to prenatla valproate treatment, and many other models have imbalances of inhibition and excitation.<sup>1</sup>
  
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====References====
 
1. PMID 18984149
 
  
  
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==[[Image:Anaphase_IF.gif|75px]]Genetics==
 
==[[Image:Anaphase_IF.gif|75px]]Genetics==
 
===Animal Models===
 
===Animal Models===
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====References====
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1. PMID 18984149

Revision as of 16:35, 25 January 2010

Stimulating Hypothesis

The stimulating hypothesis says that the imbalance between inhibitory and excitatory synaptic currents causes ASD. A central component in this theory are the variants in Neuroligins and Neurexins that have been found in ASD probands. Neuroligins and Neurexins are likely to be the centrally organizing melecules for excitatory glutamatergic and inhibitory GABAergic synapses in the mammalian brain. Studies have shown that mutant mice with the R451C Nlgn3 mutation have increased GABAergic synapses and inhibitory currents. In addition, MeCP2 knockout mice, Caps2 knowckout mice, mice exposed to prenatla valproate treatment, and many other models have imbalances of inhibition and excitation.1


Brain MRI T1 movie.gifNeuroimaging

Anaphase IF.gifGenetics

Animal Models





Back to Main Page





References

1. PMID 18984149