Elsevier

Neurobiology of Aging

Volume 13, Issue 1, January–February 1992, Pages 179-189
Neurobiology of Aging

Rapid communication
Identification of normal and pathological aging in prospectively studied nondemented elderly humans

https://doi.org/10.1016/0197-4580(92)90027-UGet rights and content

Abstract

Results of a standardized histochemical and immunocytochemical analysis of the brains of 14 nondemented elderly humans for whom prospective neurological and neuropsychological data had been collected for 3 to 8 years before death suggested that nondemented elderly humans fall into two pathological subgroups that are not clinically distinguishable. One was associated with moderate to marked cerebral amyloid deposition (“pathological aging”), while the other had either minimal or no amyloid deposition (“normal aging”). Neocortical and hippocampal neurofibrillary degeneration was either completely absent or of very limited degree in both subgroups. Both subgroups had ubiquitin-immunoreactive dystrophic neurites in the cerebral cortex and granular degeneration of myelin in white matter. These ubiquitin-immunoreactive structures seem to be a universal and invariant manifestation of brain aging, but the same cannot be said for amyloid deposition and neurofibrillary degeneration. Pathological aging might be preclinical Alzheimer's disease, but it currently cannot be distinguished from normal aging by even sensitive neuropsychological measures. These findings provide strong support for the hypothesis that cerebral amyloid deposition is not necessarily associated with clinically apparent cognitive dysfunction and that additional factors, such as neuronal or synaptic loss or widespread cytoskeletal aberrations, are necessary for dementia in AD.

References (51)

  • M.I. Ball et al.

    A new definition of Alzheimer's disease: A hippocampal dementia

    Lancet

    (1986)
  • M. Barcikowska et al.

    About the presence of paired helical filaments in dystrophic neurites participating in the plaque formation

    Acta Neuropathol. (Berl.)

    (1989)
  • G. Blessed et al.

    The association between quantitative measures of dementia and of senile change in the cerebral grey matter of elderly subjects

    Br. J. Psychiatry

    (1968)
  • H. Braak et al.

    Neurofibrillary changes confined to the entorhinal region and an abundance of cortical amyloid in cases of presenile and senile dementia

    Acta Neuropathol. (Berl.)

    (1990)
  • H. Bushke

    Selective reminding for analysis of memory and learning

    Exp. Aging Res.

    (1982)
  • H. Crystal et al.

    Neuropsychological characteristics of subjects with and without Alz-50 immunoreactivity

    Alzheimer Dis. Assoc. Disord.

    (1988)
  • H. Crystal et al.

    Clinicopathologic studies in dementia: Nondemented subjects with pathologically confirmed Alzheimer's disease

    Neurology

    (1988)
  • S.T. DeKosky et al.

    Synapse loss in frontal cortex biopsies in Alzheimer's disease: Correlation with cognitive severity

    Ann. Neurol.

    (1990)
  • D.W. Dickson et al.

    Diffuse Lewy body disease: Light and electron microscopic immunocytochemistry of senile plaques

    Acta Neuropathol. (Berl.)

    (1989)
  • D.W. Dickson et al.

    Alzheimer's disease: a double-labeling immunohistochemical study of senile plaques

    Am. J. Pathol.

    (1988)
  • D.W. Dickson et al.

    Monoclonal antibodies to Alzheimer neurofibrillary tangles (ANT). 2. Demonstration of a common antigenic determinant between ANT and neurofibrillary degeneration in progressive supranuclear palsy

    Am. J. Pathol.

    (1985)
  • D.W. Dickson et al.

    Astrocytes and microglia in human brain share an epitope recognized by a B-lymphocyte-specific monoclonal antibody, LN-1

    Am. J. Pathol.

    (1989)
  • D.W. Dickson et al.

    Ubiquitin immunoreactive structures in normal brains: distribution and developmental aspects

    Lab. Invest.

    (1990)
  • D.W. Dickson et al.

    Clinicopathologic and immunocytochemical studies on demented and nondemented individuals distinguishes two classes of senile plaques

    J. Neuropathol. Exp. Neurol.

    (1988)
  • M.M. Esiri et al.

    A quantitative study of the neurofibrillary tangles and the choline acetyltransferase activity in the cerebral cortex and the amygdala in Alzheimer's disease

    J. Neurol. Neurosurg. Psychiatry

    (1990)
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