Axonal Transection in Adult Rat Brain Induces Transsynaptic Apoptosis and Persistent Atrophy of Target Neurons
- 1 January 2002
- journal article
- research article
- Published by Mary Ann Liebert Inc in Journal of Neurotrauma
- Vol. 19 (1) , 99-109
- https://doi.org/10.1089/089771502753460277
Abstract
We used the fimbria-fornix (FF) transection model of axonal injury to test the hypothesis that transneuronal degeneration occurs in the adult central nervous system in response to deafferentation. The medial mammillary nucleus, pars medialis (MMNm) was analyzed by light and electron microscopy at 3, 7, 14, and 30 days, and 6 months after unilateral FF transection in adult rat to identify the time course of neuronal responses in a remote target. Presynaptic terminals and neuronal cell bodies degenerated in the MMNm ipsilateral to FF transection. Terminal degeneration occurred predominantly at 3 and 7 days postlesion. Between 14 and 30 days postlesion, neuronal number in the MMNm decreased (~20%). Two forms of neuronal degeneration were found in the MMNm after deafferentation. Some neurons died apoptotically. Other neurons underwent vacuolar degeneration. In these latter neurons, somatodendritic pathology occurred at 14 and 30 days and 6 months postlesion. The ultrastructure of this vacuolar degeneration was characterized by disorganization of the cytoplasm, formation of membrane-bound vacuolar cisternae and membranous inclusions, loss of organelles, cytoplasmic pallor, and chromatin alterations. This study shows that both anterograde axonal degeneration and transneuronal degeneration occur in a fornical target after FF axon transection. This transneuronal degeneration can be classified as sustained neuronal atrophy or transsynaptic apoptosis.Keywords
This publication has 53 references indexed in Scilit:
- Mammillary body lesions and restricted subicular output lesions produce long-lasting DRL performance impairments in ratsExperimental Brain Research, 1992
- AMNESIA IN MAN FOLLOWING TRANSECTION OF THE FORNIXBrain, 1991
- The effects of fornix transection and combined fornix transection, mammillary body lesions and hippocampal ablations on object-pair association memory in the rhesus monkeyBehavioural Brain Research, 1989
- Mamillary body in the rat: Topography and synaptology of projections from the subicular complex, prefrontal cortex, and midbrain tegmentumJournal of Comparative Neurology, 1989
- Asparate and/or glutamate may be transmitters in hippocampal efferents to septum and hypothalamusNeuroscience Letters, 1978
- A selective spatial deficit in monkeys after transection of the fornixNeuropsychologia, 1972
- Retrograde transsynaptic cellular degeneration in mammillary and ventral tegmental nuclei following limbic decortication in rabbits of various agesBrain Research, 1969
- An experimental study of the fornix system in the ratJournal of Comparative Neurology, 1956
- A PROPOSED MECHANISM OF EMOTIONArchives of Neurology & Psychiatry, 1937
- Beitrag zur Kenntniss des Corpus mammillare und der sogenannten Schenkel des FornixArchiv Fur Psychiatrie Und Nervenkrankheiten, 1881