Literature DB >> 1999232

Neocortical neuronal subpopulations labeled by a monoclonal antibody to calbindin exhibit differential vulnerability in Alzheimer's disease.

P R Hof1, J H Morrison.   

Abstract

Numerous studies have demonstrated that specific neuronal subtypes display a differential vulnerability to the pathological process in Alzheimer's disease. Large pyramidal neurons are likely to be highly vulnerable, whereas smaller neurons are more resistant to pathology. Using a monoclonal antibody to the calcium-binding protein calbindin, we observed in the human prefrontal cortex distinct populations of labeled cells. First, a subset of heavily stained interneurons was located in layers II and superficial III and in layers V-VI. Second, a subpopulation of pyramidal neurons in the mid and deep parts of layer III displayed a less intense, punctate staining pattern. The interneurons in the superficial layers were unaffected in the Alzheimer's disease cases. Interestingly, in layers V-VI, there was significant cell loss in the interneuron population, but only in the Alzheimer's disease cases with high neurofibrillary tangle densities. The calbindin-immunoreactive pyramidal neurons of layer III were dramatically affected in the disease. Moreover, there was a strong correlation between the extent of the loss of these cells and neurofibrillary tangle counts. These data suggest that calbindin is present in multiple neuronal subpopulations that exhibit a differential vulnerability in Alzheimer's disease and support the hypothesis that the degenerative process involves specific neuronal subsets with particular anatomical and molecular profiles.

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Year:  1991        PMID: 1999232     DOI: 10.1016/0014-4886(91)90096-u

Source DB:  PubMed          Journal:  Exp Neurol        ISSN: 0014-4886            Impact factor:   5.330


  40 in total

1.  Hippocampal calbindin-1 immunoreactivity correlate of recognition memory performance in aged mice.

Authors:  Virawudh Soontornniyomkij; Victoria B Risbrough; Jared W Young; Benchawanna Soontornniyomkij; Dilip V Jeste; Cristian L Achim
Journal:  Neurosci Lett       Date:  2012-04-06       Impact factor: 3.046

2.  GABA-Synthesizing Enzymes in Calbindin and Calretinin Neurons in Monkey Prefrontal Cortex.

Authors:  Brad R Rocco; Robert A Sweet; David A Lewis; Kenneth N Fish
Journal:  Cereb Cortex       Date:  2015-03-30       Impact factor: 5.357

3.  Contingent vulnerability of entorhinal parvalbumin-containing neurons in Alzheimer's disease.

Authors:  A Solodkin; S D Veldhuizen; G W Van Hoesen
Journal:  J Neurosci       Date:  1996-05-15       Impact factor: 6.167

4.  Hippocampal interneuron loss in an APP/PS1 double mutant mouse and in Alzheimer's disease.

Authors:  Hisaaki Takahashi; Ivona Brasnjevic; Bart P F Rutten; Nicolien Van Der Kolk; Daniel P Perl; Constantin Bouras; Harry W M Steinbusch; Christoph Schmitz; Patrick R Hof; Dara L Dickstein
Journal:  Brain Struct Funct       Date:  2010-03-07       Impact factor: 3.270

5.  [Alzheimer's disease and vascular dementia. Determination of atrophy of the corpus callosum and cerebral cortex].

Authors:  T Möller; C Born; M F Reiser; H-J Möller; H Hampel; S J Teipel
Journal:  Nervenarzt       Date:  2009-01       Impact factor: 1.214

6.  Neuronal depletion of calcium-dependent proteins in the dentate gyrus is tightly linked to Alzheimer's disease-related cognitive deficits.

Authors:  Jorge J Palop; Brian Jones; Lisa Kekonius; Jeannie Chin; Gui-Qiu Yu; Jacob Raber; Eliezer Masliah; Lennart Mucke
Journal:  Proc Natl Acad Sci U S A       Date:  2003-07-24       Impact factor: 11.205

7.  Meta-analysis of synaptic pathology in Alzheimer's disease reveals selective molecular vesicular machinery vulnerability.

Authors:  Martijn C de Wilde; Cassia R Overk; John W Sijben; Eliezer Masliah
Journal:  Alzheimers Dement       Date:  2016-01-14       Impact factor: 21.566

8.  Decline in age-dependent, MK801-induced injury coincides with developmental switch in parvalbumin expression: somatosensory and motor cortex.

Authors:  Carla M Lema Tomé; Ryan Miller; Clayton Bauer; Chelsey Smith; Kaitlin Blackstone; Adam Leigh; Jamie Busch; Christopher P Turner
Journal:  Dev Psychobiol       Date:  2008-11       Impact factor: 3.038

9.  Role of synucleins in Alzheimer's disease.

Authors:  Leslie Crews; Igor Tsigelny; Makoto Hashimoto; Eliezer Masliah
Journal:  Neurotox Res       Date:  2009-06-24       Impact factor: 3.911

10.  Visual and motor connectivity and the distribution of calcium-binding proteins in macaque frontal eye field: implications for saccade target selection.

Authors:  Pierre Pouget; Iwona Stepniewska; Erin A Crowder; Melanie W Leslie; Erik E Emeric; Matthew J Nelson; Jeffrey D Schall
Journal:  Front Neuroanat       Date:  2009-05-22       Impact factor: 3.856

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