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      Curcuma treatment prevents cognitive deficit and alteration of neuronal morphology in the limbic system of aging rats : Vidal et al.

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          Ageing and neuronal vulnerability.

          Everyone ages, but only some will develop a neurodegenerative disorder in the process. Disease might occur when cells fail to respond adaptively to age-related increases in oxidative, metabolic and ionic stress, thereby resulting in the accumulation of damaged proteins, DNA and membranes. Determinants of neuronal vulnerability might include cell size and location, metabolism of disease-specific proteins and a repertoire of signal transduction pathways and stress resistance mechanisms. Emerging evidence on protein interaction networks that monitor and respond to the normal ageing process suggests that successful neural ageing is possible for most people, but also cautions that cures for neurodegenerative disorders are unlikely in the near future.
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            A method for vibratome sectioning of Golgi-Cox stained whole rat brain.

            A method for impregnating the whole rat brain with Golgi-Cox stain and sectioning with the vibratome is described. The method is simple, inexpensive and provides good resolution of dendrites and spines.
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              Hippocampo-prefrontal cortex pathway: anatomical and electrophysiological characteristics.

              The hippocampus, the prefrontal cortex, and interconnected neural circuits are implicated in several aspects of cognitive and memory processes. The present review is dedicated to the description of the anatomo-functional characteristics of the hippocampo-prefrontal pathway and related neuronal circuits in the rat. This pathway, which originates from the hippocampal CA1/subiculum fields, innervates the prelimbic/medial orbital areas of the prefrontal cortex (PL/MO). Its synaptic influence on cortical pyramidal neurons consists in an early monosynaptic excitation followed by an inhibition and, in some cases, a late excitation. These later effects are likely due to the subsequent activation of the local cortical network. PL/MO areas and the CA1/subiculum both send projections to the nucleus accumbens, a region of the ventral striatum which is particularly implicated in goal-directed behavior. Therefore, emphasis is placed on respective projections from PL/MO areas and from the CA1/subiculum on the "core" and the "shell" regions of the nucleus accumbens, as well as on their interconnected circuits. Signals which are directed to the prefrontal cortex through these circuits might modulate hippocampo-prefrontal inputs. Finally, the direct and/or indirect relationships of the hippocampus, prefrontal cortex, and nucleus accumbens with the ventral tegmental area/substantia nigra pars compacta complex (VTA/SNC) (where dopamine neurons are located) will also be described, because these neurons are known to modulate synaptic transmission and plasticity in their target structures and to play a fundamental role in motivational processes.
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                Author and article information

                Journal
                Synapse
                Synapse
                Wiley
                08874476
                March 2017
                March 2017
                January 12 2017
                : 71
                : 3
                : e21952
                Affiliations
                [1 ]Instituto de Fisiología, Benemérita Universidad Autónoma de Puebla; Puebla Pue México
                [2 ]Centro de Química; Instituto de Ciencias, Benemérita Universidad Autónoma de Puebla; Puebla Pue México
                [3 ]Instituto de Química, Universidad Nacional Autónoma de México; México México
                [4 ]Departamento de Fisiología; Biofísica y Neurociencias, Centro de Investigaciones y Estudios Avanzados IPN, DF; México México
                [5 ]Facultad de Ciencias Químicas; Benemérita Universidad Autónoma de Puebla; Puebla Pue México
                Article
                10.1002/syn.21952
                7454925c-f5be-4448-9a6e-8363d0792800
                © 2017

                http://doi.wiley.com/10.1002/tdm_license_1

                http://onlinelibrary.wiley.com/termsAndConditions

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