Cytomorphometric changes in hippocampal CA1 neurons exposed to simulated microgravity using rats as model

Ranjan, Amit ; Behari, Jitendra ; Mallick, Birendra N. (2014) Cytomorphometric changes in hippocampal CA1 neurons exposed to simulated microgravity using rats as model Frontiers in Neurology, 5 . Article ID 77, 10 pages. ISSN 1664-2295

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Official URL: http://journal.frontiersin.org/article/10.3389/fne...

Related URL: http://dx.doi.org/10.3389/fneur.2014.00077

Abstract

Microgravity and sleep loss lead to cognitive and learning deficits. These behavioral alterations are likely to be associated with cytomorphological changes and loss of neurons. To understand the phenomenon, we exposed rats (225–275 g) to 14 days simulated microgravity (SMg) and compared its effects on CA1 hippocampal neuronal plasticity, with that of normal cage control rats. We observed that the mean area, perimeter, synaptic cleft, and length of active zone of CA1 hippocampal neurons significantly decreased while dendritic arborization and number of spines significantly increased in SMg group as compared with controls. The mean thickness of the postsynaptic density and total dendritic length remained unaltered. The changes may be a compensatory effect induced by exposure to microgravity; however, the effects may be transient or permanent, which need further study. These findings may be useful for designing effective prevention for those, including the astronauts, exposed to microgravity. Further, subject to confirmation, we propose that SMg exposure might be useful for recovery of stroke patients.

Item Type:Article
Source:Copyright of this article belongs to Frontiers.
Keywords:Dendritic Arborization; Golgi–Cox; Learning and Memory; Length of Active Zone; Neuronal Plasticity; Spine Density
ID Code:99378
Deposited On:21 Apr 2016 06:08
Last Modified:19 May 2016 11:10

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