Literature DB >> 28482636

Intrahippocampal Pathways Involved in Learning/Memory Mechanisms are Affected by Intracerebral Infusions of Amyloid-β25-35 Peptide and Hydrated Fullerene C60 in Rats.

Rita Gordon1, Igor Podolski2, Ekaterina Makarova2, Alexander Deev2, Ekaterina Mugantseva2, Sergey Khutsyan1,2, Frank Sengpiel3, Arkady Murashev4, Vasily Vorobyov1.   

Abstract

Primary memory impairments associated with increased level of amyloid-β (Aβ) in the brain have been shown to be linked, partially, with early pathological changes in the entorhinal cortex (EC) which spread on the whole limbic system. While the hippocampus is known to play a key role in learning and memory mechanisms, it is as yet unclear how its structures are involved in the EC pathology. In this study, changes in memory and neuronal morphology in male Wistar rats intrahippocampally injected with Aβ25-35 were correlated on days 14 and 45 after the injection to reveal specific cognitive-structural associations. The main focus was on the dentate gyrus (DG) and hippocampal areas of CA1 and CA3 because of their involvement in afferent flows from EC to the hippocampus through tri-synaptic (EC → DG → CA3CA1) and/or mono-synaptic (EC → CA1) pathways. Evident memory impairments were observed at both time points after Aβ25-35 injection. However, on day 14, populations of morphological intact neurons were decreased in CA3 and, drastically, in CA1, and the DG supramedial bundle was significantly damaged. On day 45, this bundle largely and CA1 neurons partially recovered, whereas CA3 neurons remained damaged. We suggest that Aβ25-35 primarily affects the tri-synaptic pathway, destroying the granular cells in the DG supramedial area and neurons in CA3 and, through the Schaffer collaterals, in CA1. Intrahippocampal pretreatment with hydrated fullerene C60 allows the neurons and their connections to survive the amyloidosis, thus supporting the memory mechanisms.

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Keywords:  Alzheimer’s disease; CA1; CA3; dentate gyrus; hippocampus; neurodegeneration

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Year:  2017        PMID: 28482636     DOI: 10.3233/JAD-161182

Source DB:  PubMed          Journal:  J Alzheimers Dis        ISSN: 1387-2877            Impact factor:   4.472


  2 in total

1.  Distinct Impacts of Fullerene on Cognitive Functions of Dementia vs. Non-dementia Mice.

Authors:  Yawen Wu; Runzi Wang; Yuexiang Wang; Jing Gao; Lina Feng; Zhuo Yang
Journal:  Neurotox Res       Date:  2019-06-20       Impact factor: 3.911

2.  Analysis of the Effect of Neuroprotectors That Reduce the Level of Degeneration of Neurons in the Rat Hippocampus Caused by Administration of Beta-Amyloid Peptide Aβ25-35.

Authors:  R Ya Gordon; E G Makarova; E A Mugantseva; S S Khutsyan; V F Kichigina
Journal:  Bull Exp Biol Med       Date:  2022-02-17       Impact factor: 0.804

  2 in total

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