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CNS development under altered gravity: cerebellar glial and neuronal protein expression in rat neonates exposed to hypergravityThe future of space exploration depends on a solid understanding of the developmental process under microgravity, specifically in relation to the central nervous system (CNS). We have previously employed a hypergravity paradigm to assess the impact of altered gravity on the developing rat cerebellum. The present study addresses the molecular mechanisms involved in the cerebellar response to hypergravity. Specifically, the study focuses on the expression of selected glial and neuronal cerebellar proteins in rat neonates exposed to hypergravity (1.5 G) from embryonic day (E)11 to postnatal day (P)6 or P9 (the time of maximal cerebellar changes) comparing them against their expression in rat neonates developing under normal gravity. Proteins were analyzed by quantitative Western blots of cerebellar homogenates; RNA analysis was performed in the same samples using quantitative PCR. Densitometric analysis of Western blots suggested a reduction in glial (glial acidic protein, GFAP) and neuronal (neuronal cell adhesion molecule, NCAM-L1, synaptophysin) proteins, but the changes in individual cerebellar proteins in hypergravity-exposed neonates appeared both age- and gender-specific. RNA analysis suggested a reduction in GFAP and synaptophysin mRNAs on P6. These data suggest that exposure to hypergravity may interfere with the expression of selected cerebellar proteins. These changes in protein expression may be involved in mediating the effect of hypergravity on the developing rat cerebellum. c2003 COSPAR. Published by Elsevier Ltd. All rights reserved.
Document ID
20050194004
Acquisition Source
Ames Research Center
Document Type
Reprint (Version printed in journal)
Authors
Nguon, K.
(Brigham and Women's Hospital Boston, MA 02115, United States)
Li, G-H
Sajdel-Sulkowska, E. M.
Date Acquired
August 23, 2013
Publication Date
January 1, 2004
Publication Information
Publication: Advances in space research : the official journal of the Committee on Space Research (COSPAR)
Volume: 33
Issue: 8
Subject Category
Aerospace Medicine
Funding Number(s)
CONTRACT_GRANT: R01-ES11946-01
CONTRACT_GRANT: NCC2-1042
Distribution Limits
Public
Copyright
Other
Keywords
NASA Program Fundamental Space Biology
NASA Discipline Developmental Biology
Non-NASA Center

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