Quantitative morphometric analysis of basal forebrain neurons expressing β-nerve growth factor receptors in normal and Alzheimer's disease brains

The number and size distribution of β-nerve growth factor (β-NGF) receptor-immunoreactive neurons has been examined in the nucleus of the diagonal band and the anterior, intermediate and posterior regions of the nucleus basalis of Meynert in Alzheimer's disease (AD) and compared with normal bra...

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Главные авторы: Allen, S, Dawbarn, D, MacGowan, S, Wilcock, G, Treanor, J, Moss, T
Формат: Journal article
Язык:English
Опубликовано: 1990
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author Allen, S
Dawbarn, D
MacGowan, S
Wilcock, G
Treanor, J
Moss, T
author_facet Allen, S
Dawbarn, D
MacGowan, S
Wilcock, G
Treanor, J
Moss, T
author_sort Allen, S
collection OXFORD
description The number and size distribution of β-nerve growth factor (β-NGF) receptor-immunoreactive neurons has been examined in the nucleus of the diagonal band and the anterior, intermediate and posterior regions of the nucleus basalis of Meynert in Alzheimer's disease (AD) and compared with normal brain. The number of neurons was in general lower in AD, although there was not a statistically significant reduction in any region of the basal nuclei. In some regions, there was an increase in the proportion of small neurons, with a decrease in larger neurons. Cortical choline acetyltransferase activity was found to correlate positively with the number of neurons in all areas of the nucleus basalis. In this group of severely demented AD patients, there was a large number of basal forebrain neurons which expressed β-NGF receptors; β-NGF may, therefore, be of therapeutic value in AD.
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spelling oxford-uuid:f5e1e339-0a5e-4b44-88a6-62b59d000bca2022-03-27T12:30:43ZQuantitative morphometric analysis of basal forebrain neurons expressing β-nerve growth factor receptors in normal and Alzheimer's disease brainsJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:f5e1e339-0a5e-4b44-88a6-62b59d000bcaEnglishSymplectic Elements at Oxford1990Allen, SDawbarn, DMacGowan, SWilcock, GTreanor, JMoss, TThe number and size distribution of β-nerve growth factor (β-NGF) receptor-immunoreactive neurons has been examined in the nucleus of the diagonal band and the anterior, intermediate and posterior regions of the nucleus basalis of Meynert in Alzheimer's disease (AD) and compared with normal brain. The number of neurons was in general lower in AD, although there was not a statistically significant reduction in any region of the basal nuclei. In some regions, there was an increase in the proportion of small neurons, with a decrease in larger neurons. Cortical choline acetyltransferase activity was found to correlate positively with the number of neurons in all areas of the nucleus basalis. In this group of severely demented AD patients, there was a large number of basal forebrain neurons which expressed β-NGF receptors; β-NGF may, therefore, be of therapeutic value in AD.
spellingShingle Allen, S
Dawbarn, D
MacGowan, S
Wilcock, G
Treanor, J
Moss, T
Quantitative morphometric analysis of basal forebrain neurons expressing β-nerve growth factor receptors in normal and Alzheimer's disease brains
title Quantitative morphometric analysis of basal forebrain neurons expressing β-nerve growth factor receptors in normal and Alzheimer's disease brains
title_full Quantitative morphometric analysis of basal forebrain neurons expressing β-nerve growth factor receptors in normal and Alzheimer's disease brains
title_fullStr Quantitative morphometric analysis of basal forebrain neurons expressing β-nerve growth factor receptors in normal and Alzheimer's disease brains
title_full_unstemmed Quantitative morphometric analysis of basal forebrain neurons expressing β-nerve growth factor receptors in normal and Alzheimer's disease brains
title_short Quantitative morphometric analysis of basal forebrain neurons expressing β-nerve growth factor receptors in normal and Alzheimer's disease brains
title_sort quantitative morphometric analysis of basal forebrain neurons expressing β nerve growth factor receptors in normal and alzheimer s disease brains
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