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Comparative Study
. 1998 Jul;8(3):531-7.
doi: 10.1111/j.1750-3639.1998.tb00175.x.

Neuronal apoptosis in fatal familial insomnia

Affiliations
Comparative Study

Neuronal apoptosis in fatal familial insomnia

A Dorandeu et al. Brain Pathol. 1998 Jul.

Abstract

The possibility that neuronal loss in prion diseases occurs through an apoptotic process has been postulated and is consistent with the lack of inflammation in these disorders. In order to test this hypothesis in FFI, in which neuronal loss is the predominant neuropathological feature, we examined samples of thalamus, basal ganglia, cerebral cortex, cerebellum and medulla from 10 subjects with FFI. All the patients had the characteristic 178 N mutation of the PrP gene. Eight subjects were homozygous methionine/methionine at codon 129 and 2 were heterozygous methionine/valine. Apoptotic neurons were identified by in situ end labelling in all the FFI cases and in none of the controls. They were mostly found in damaged regions and their presence and abundance seemed to correlate closely with the neuronal loss. They were particularly abundant in the thalamus and medullary olives. In heterozygous cases who had a longer disease duration and more widespread cerebral changes, apoptotic neurons were also found in the neocortex and striatum. The abundance of apoptotic neurons also correlated well with microglial activation as demonstrated by the expression of major histocompatibility complex class II antigens. PrPres immunostaining was almost invariably negative, consistent with previous data showing the lack of obvious correlation between neuronal loss and PrPres deposits in prion diseases.

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References

    1. Adle‐Biassette H, Levy Y, Colombel M, Poron F, Natchev S, Keohane C, Gray F (1995) Neuronal apoptosis in HIV infection in adults. Neuropathol Appl Neurobiol 21: 218–227. - PubMed
    1. An SF, Ciardi A, Giometto B, Scaravilli T, Gray F, Scaravilli F (1996) Investigation of the Expression of Major Histocompatibility Complex (MHC) Class II and Cytokines and Detection of HIV‐1 DNA within Brains of Asymptomatic and Symptomatic HIV‐1 positive Patients. Acta Neuropathol 91: 494–503. - PubMed
    1. Banati RB, Gehrmann J, Schubert P, Kreutzberg GW (1993) Cytotoxicity of microglia. Glia 7: 111–118. - PubMed
    1. Bell JE, Gentleman SM, Ironside JW, McCardle L, Lantos PL, Doey L, Lowe J, Fergusson J, Luthert P, McQuaid S, Allen IV (1997) Prion protein immunocytochemistry‐UK five centre consensus report. Neuropathol Appl Neurobiol 23: 26–35. - PubMed
    1. Bonofoco E, Kraino D, Ankarcrona M, Nicotera P, Lipton SA (1995) Apoptosis and necrosis: Two distinct events induced, respectively, by mild and intense insults with N‐ methyl‐D‐aspartate or nitric oxide/superoxide in cortical cell cultures. Proc Natl Acad Sci USA 92: 7162–7166. - PMC - PubMed

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