4.2 Article

Glutamate receptor-mediated restoration of experience-dependent place field expansion plasticity in aged rats

期刊

BEHAVIORAL NEUROSCIENCE
卷 122, 期 3, 页码 535-548

出版社

AMER PSYCHOLOGICAL ASSOC
DOI: 10.1037/0735-7044.122.3.535

关键词

aging; CA1; hippocampus; place cell; theta phase precession

资金

  1. NIA NIH HHS [R01 AG010546-09, R37 AG012609-15, R01 AG010546-10, R01 AG012609, R01 AG037320, R01 AG010546-12, R01 AG010546-11, R01 AG010546, R37 AG012609, AG012609, AG010546] Funding Source: Medline

向作者/读者索取更多资源

Place fields of hippocampal pyramidal cells expand asymmetrically when adult rats repeatedly follow the same route. This behaviorally induced expression of neuronal plasticity uses an NMDAR-dependent, LTP-like mechanism and could be used by hippocampal networks to store information. Aged spatial memory-impaired rats exhibit defective experience-dependent place field expansion plasticity. One possible explanation for this aged-associated deficit is alterations in glutamatergic function. In fact, both NMDA(R)- and AMPA(R)-mediated field excitatory postsynaptic potentials in CA I decrease with aging. The current study investigated whether modulation of either AMPA or NDMA receptor activity could restore this experience-dependent plasticity by prolonging AMPA(R) activity with the ampakine CX516 and modulating the NMDAR with the noncompetitive antagonist memantine. The spatial firing characteristics of multiple CA1 pyramidal cells were monitored under both treatment conditions as aged rats repeatedly traversed a circular track. Compared to the saline baseline condition, acute administration of memantine, but not CX516, reinstated experience-dependent place field expansion. Taken together, these data suggest that pharmacological manipulation of the NMDAR can improve the function of hippocampal networks critical to optimal cognition in aging.

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