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Journal ArticleDOI

Amelioration of cholinergic neuron atrophy and spatial memory impairment in aged rats by nerve growth factor.

TLDR
Continuous intracerebral infusion of NGF over a period of four weeks can partly reverse the cholinergic cell body atrophy and improve retention of a spatial memory task in behaviourally impaired aged rats.
Abstract
In aged rodents, impairments in learning and memory have been associated with an age-dependent decline in forebrain of cholinergic function, and recent evidence indicates that the cholinergic neurons in the nucleus basalis magnocellularis, the septal-diagonal band area and the striatum undergo age-dependent atrophy. Thus, as in Alzheimer-type dementia in man, degenerative changes in the forebrain cholinergic system may contribute to age-related cognitive impairments in rodents. The cause of these degenerative changes is not known. Recent studies have shown that the central cholinergic neurons in the septal-diagonal band area, nucleus basalis and striatum are sensitive to the neurotrophic protein nerve growth factor (NGF). In particular, intraventricular injections or infusions of NGF in young adult rats have been shown to prevent retrograde neuronal cell death and promote behavioural recovery after damage to the septo-hippocampal connections. It is so far not known, however, whether the atrophic cholinergic neurons in aged animals are responsive to NGF treatment. We report here that continuous intracerebral infusion of NGF over a period of four weeks can partly reverse the cholinergic cell body atrophy and improve retention of a spatial memory task in behaviourally impaired aged rats.

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Journal ArticleDOI

Innovative Therapy for Alzheimer's Disease-With Focus on Biodelivery of NGF.

TL;DR: The intent of this review is describing available experimental and clinical data related to AD therapy, priming to gain additional facts associated with the importance of NGF for AD treatment, and encapsulated cell biodelivery (ECB) as an efficient tool for NGF delivery.
Journal ArticleDOI

Effect of basic fibroblast growth factor on neurons cultured from various regions of postnatal rat brain.

TL;DR: BFGF can function as a neurotrophic factor not only on fetal but also on postnatal neurons of the central nervous system, and that bFGF has great potential for application in vivo.
Journal ArticleDOI

Stimulation of nerve growth factor synthesis/secretion by propentofylline in cultured mouse astroglial cells

TL;DR: The drug was found to increase the NGF content in the conditioned medium to a level over ten times that of the control, suggesting that the action of propentofylline in the brain includes stimulation of synthesis/secretion of NGF in astroglial cells.
Journal ArticleDOI

Central neuronal loss and behavioral impairment in mice lacking neurotrophin receptor p75.

TL;DR: Vulnerability to the lack of p75 is demonstrated in adult central neurons that are neurotrophin dependent and the loss of noncholinergic central neurons in mice lacking p75 suggests a role for p75 in cell survival by an as yet undetermined mechanism.
Journal ArticleDOI

Epidermal growth factor and basic fibroblast growth factor promote the generation of long-term potentiation in the dentate gyrus of anaesthetized rats.

TL;DR: EGF and bFGF promote the generation process of LTP, and the effect of EGF was dose-dependent in the range 5-500 ng.
References
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Journal ArticleDOI

Developments of a water-maze procedure for studying spatial learning in the rat

TL;DR: Developments of an open-field water-maze procedure in which rats learn to escape from opaque water onto a hidden platform are described, suggesting that they may lend themselves to a variety of behavioural investigations, including pharmacological work and studies of cerebral function.
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The Cholinergic Hypothesis of Geriatric Memory Dysfunction

TL;DR: Biochemical, electrophysiological, and pharmacological evidence supporting a role for cholinergic dysfunction in age-related memory disturbances is critically reviewed and an attempt has been made to identify pseudoissues, resolve certain controversies, and clarify misconceptions that have occurred in the literature.
Journal ArticleDOI

Nerve growth factor promotes survival of septal cholinergic neurons after fimbrial transections

TL;DR: It is suggested that fimbrial transections resulted in retrograde degeneration of cholinergic septo-hippocampal neurons and that NGF treatment strongly attenuated this lesion-induced degeneration.
Journal ArticleDOI

Nerve growth factor treatment after brain injury prevents neuronal death

TL;DR: Cholinergic neuronal degeneration after axotomy has been proposed to be due to the loss of a retrogradely transported neurotrophic factor, possibly nerve growth factor (NGF), and NGF was continuously infused into the lateral ventricles of adult rats that had received bilateral lesions of all cholinergic axons projecting from the medial septum to the dorsal hippocampus.
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