Literature DB >> 11431120

Multiple-label immunocytochemistry for the evaluation of nature of cell death in experimental models of neurodegeneration.

E Adamec1, F Yang, G M Cole, R A Nixon.   

Abstract

A prominent feature of neurodegenerative diseases is a loss of specific neuronal populations. The pathophysiological mechanisms responsible are, however, poorly understood. Primary cultures of rodent embryonic neurons represent a useful experimental system for investigation of molecular pathways of neurodegeneration and mechanisms of cell death. Here, we report a technique utilizing triple-label immunocytochemistry with confocal immunofluorescence detection designed to simultaneously assess multiple parameters of cell injury in individual hippocampal neurons in primary culture. This method combines detection of DNA damage (TUNEL or Klenow assay) with double-label immunocytochemistry for the activated form of caspase-3 or, alternatively, caspase-cleaved actin (fractin), and microtubule-associated protein-2 (MAP-2) or beta-tubulin. The combined evaluation of the form of nuclear damage (karyorrhexis, pyknosis), the presence or absence of activated caspase-3, and the extent of the damage to cell cytoskeleton, allows for precise assessment of the extent of injury and the mode of cell death (apoptosis, oncosis) for individual neurons.

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Year:  2001        PMID: 11431120     DOI: 10.1016/s1385-299x(01)00072-1

Source DB:  PubMed          Journal:  Brain Res Brain Res Protoc        ISSN: 1385-299X


  9 in total

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7.  Proteomic profiling and neurodegeneration in West-Nile-virus-infected neurons.

Authors:  V Dhingra; Q Li; A B Allison; D E Stallknecht; Z F Fu
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Authors:  Jenni Neubert; Susanne Wagner; Jürgen Kiwit; Anja U Bräuer; Jana Glumm
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9.  Fibrinogen Interaction with Astrocyte ICAM-1 and PrPC Results in the Generation of ROS and Neuronal Death.

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  9 in total

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