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Neurotoxicology • Fall 1988<br />

Neuropathologic, neurochemical and<br />

immunocytochemical characteristics<br />

of aluminum-induced neurofilamentous degeneration<br />

Author information<br />

Pendlebury WW1, Beal MF,<br />

Kowall NW, Solomon PR.<br />

Department of Pathology<br />

University of Vermont College of Medicine, Burlington<br />

Abstract<br />

Inoculation of aluminum salts or metallic aluminum into the central nervous system<br />

of rabbits produces an encephalomyelopathy accompanied by widespread neurofibrillary<br />

degeneration (NFD) affecting restricted neuronal populations. Some investigators<br />

have suggested that this preparation may serve as an animal model for human<br />

neurodegenerative disorders, such as Alzheimer’s disease (AD), in which neurofibrillary<br />

tangle (NFT) formation is a prominent histopathologic finding. However, neurochemical,<br />

immunocytochemical and behavioral features of the model are largely unknown<br />

and its neuropathology only partially described. We have undertaken a series<br />

of experiments designed to further characterize these aspects of the model. We have<br />

used an intraventricular route of injection of aluminum chloride and found that the<br />

distribution of NFD in rabbit brain is similar to the distribution of NFT formation in<br />

AD. Immunocytochemical probes demonstrate that phosphorylated neurofilaments<br />

accumulate in neuronal perikarya containing NFD, and double labelling techniques<br />

suggest that NFD affects primarily projection type neurons. The neurochemical profile<br />

of aluminum intoxicated rabbits shows both similarities and discrepancies to that<br />

of AD. Finally, as reported in a companion article in this issue of Neurotoxicology<br />

(Solomon and Pendlebury, 1988), aluminum-exposed rabbits develop learning and<br />

memory deficits which are strongly correlated with the degree of whole brain NFD<br />

but not with motor, sensory or motivational factors. We conclude that aluminum-induced<br />

NFD may have relevance for understanding NFT formation in AD and other<br />

neurodegenerative disorders in which abnormalities of the neuronal cytoskeletal architecture<br />

are present.<br />

“... aluminum-induced neurofibrillary degeneration<br />

may have relevance for understanding neurofibrillary<br />

tangle formation in Alzheimer’s disease and<br />

other neurodegenerative disorders ...”<br />

http://www.ncbi.nlm.nih.gov/pubmed/?term=3200512

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