A Comparison of the Dynamics of S100B.pdf
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Hindawi Publishing Corporation
Cardiovascular Psychiatry and Neurology
Volume 2010, Article ID 720958, 6 pages
doi:10.1155/2010/720958
Research Article
A Comparison of the Dynamics of S100B, S100A1, and S100A6
mRNA Expression in Hippocampal CA1 Area of Rats during
Long-Term Potentiation and after Low-Frequency Stimulation
Pavel D. Lisachev,1, 2 Mark B. Shtark,1 Olga O. Sokolova,1 Vladimir O. Pustylnyak,1
Mary Yu. Salakhutdinova,2 and Oleg I. Epstein3
1 Institute for Molecular Biology and Biophysics, Siberian Branch of the Russian Academy of Medical Sciences,
2 Timakova Street, Novosibirsk 630117, Russia
2 Laboratory of Biomedical Informatics, Design Technological Institute of Digital Techniques, Siberian Branch of
The Russian Academy of Sciences, 6 Institutskaya ul., Novosibirsk 630090, Russia
3Research Division, OOO NPF Materia Medica Holding, 9 3rd Samotyochnyi per., Moscow 127473, Russia
Correspondence should be addressed to Pavel D. Lisachev, lisachev@ngs.ru
Received 1 March 2010; Revised 27 April 2010; Accepted 17 August 2010
Academic Editor: Rosario Donato
Copyright ? 2010 Pavel D. Lisachev et al. This is an open access article distributed under the Creative Commons Attribution
License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly
cited.
The interest in tissue- and cell-specific S100 proteins physiological roles in the brain remains high. However, necessary
experimental data for the assessment of their dynamics in one of the most important brain activities, its plasticity, is not sufficient.
We studied the expression of S100B, S100A1, and S100A6 mRNA in the subfield CA1 of rat hippocampal slices after tetanic
and low-frequency stimulation by real-time PCR. Within 30 min after tetanization, a 2–4 fold increase of the S100B mRNA level
was observed as compared to the control (intact slices) or to low-frequency stimulation. Subsequently, the S100B mRNA content
gradually returned to baseline. T
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