Plasticity of Hippocampal Circuitry in Alzheimer's Disease
- 6 December 1985
- journal article
- research article
- Published by American Association for the Advancement of Science (AAAS) in Science
- Vol. 230 (4730), 1179-1181
- https://doi.org/10.1126/science.4071042
Abstract
Two markers of neuronal plasticity were used to compare the response of the human central nervous system to neuronal loss resulting from Alzheimer's disease with the response of rats to a similar neuronal loss induced by lesions. In rats that had received lesions of the entorhinal cortex, axon sprouting of commissural and associational fibers into the denervated molecular layer of the dentate gyrus was paralleled by a spread in the distribution of tritiated kainic acid-binding sites. A similar expansion of kainic acid receptor distribution was observed in hippocampal samples obtained postmortem from patients with Alzheimer's disease. An enhancement of acetylcholinesterase activity in the dentate gyrus molecular layer, indicative of septal afferent sprouting, was also observed in those patients with a minimal loss of cholinergic neurons. These results are evidence that the central nervous system is capable of a plastic response in Alzheimer's disease. Adaptive growth responses occur along with the degenerative events.Keywords
This publication has 48 references indexed in Scilit:
- Promoting Functional Plasticity in the Damaged Nervous SystemScience, 1985
- Somatostatin immunoreactivity in neuritic plaques of Alzheimer's patientsNature, 1985
- Neurotransmitter specific alterations in dementing disorders: Insights from animal modelsJournal of Psychiatric Research, 1984
- Distribution of [3H]AMPA binding sites in rat brain as determined by quantitative autoradiographyBrain Research, 1984
- Effects of Postmortem Delay and Temperature on Neurotransmitter Receptor Binding in a Rat Model of the Human Autopsy ProcessJournal of Neurochemistry, 1984
- Alzheimer's Disease and Senile Dementia: Loss of Neurons in the Basal ForebrainScience, 1982
- The time course of changes in open field activity following bilateral entorhinal lesions in rats and catsBehavioral and Neural Biology, 1981
- Synaptic localization of kainic acid binding sitesNature, 1980
- Changes in the distribution of the dentate gyrus associational system following unilateral or bilateral entorhinal lesions in the adult ratBrain Research, 1976
- Time-dependent changes in commissural field potentials in the dentate gyrus following lesions of the entorhinal cortex in adult ratsBrain Research, 1975