Publication | Open Access
Impaired Critical Period Plasticity in Primary Auditory Cortex of Fragile X Model Mice
75
Citations
40
References
2013
Year
NeuropsychologyGeneticsAuditory CortexAdaptive PlasticityStructural PlasticityAuditory ScienceHealth SciencesAuditory ProcessingFragile X SyndromePrimary Auditory CortexBehavioral NeuroscienceCortical RemodelingAuditory ResearchHuman HearingSynaptic PlasticityNeurobiological MechanismDevelopmental BiologyDevelopmental PlasticityNeurophysiologyNeuroanatomyFragile X SpectrumAuditory PhysiologyNeuroscienceMolecular NeurobiologyCentral Nervous SystemMedicineAuditory SystemDevelopmental Delay
Fragile X syndrome, the most common form of heritable mental retardation, is a developmental disorder with known effects within sensory systems. Altered developmental plasticity has been reported in the visual and somatosensory systems in Fmr1 knock-out (KO) mice. Behavioral studies have revealed maladaptive auditory responses in fragile X syndrome patients and Fmr1 KO mice, suggesting that adaptive plasticity may also be impaired in the auditory system. Here we show that, whereas tonotopic frequency representation develops normally in Fmr1 KO mice, developmental plasticity in primary auditory cortex is grossly impaired. This deficit can be rescued by pharmacological blockade of mGluR5 receptors. These results support the mGluR hypothesis of fragile X mental retardation and suggest that deficient developmental plasticity may contribute to maladaptive auditory processing in fragile X syndrome.
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