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DOI: 10.1055/s-2003-38202
Magnitude- and Time-Dependence of the Effect of Treadmill Exercise on Cell Proliferation in the Dentate Gyrus of Rats
Publication History
Accepted after revision: July 30, 2002
Publication Date:
01 April 2003 (online)
Abstract
The effect of treadmill exercise on cell proliferation in the dentate gyrus was studied in Sprague-Dawley rats via 5-bromo-2'-deoxyuridine (BrdU)-specific immunohistochemistry. For studying the dependence of this effect on the magnitude of exercise, animals were divided into the control, light-exercise, moderate-exercise, and severe-exercise groups; different exercise regimens were applied to the groups. To study the temporal dependence of this effect, animals were divided into the control, 1-day-exercise, 3-days-exercise, 7-days-exercise, 14-days-exercise, and 28-days-exercise groups; the regimen used on the light-exercise group was applied to each of the exercise group over the respective number of days. Cell proliferation was most prominent in the light-exercise group (p < 0.001) and reached a maximum level after 7 days of exercise (p < 0.001). In this study, it was shown that cell proliferation is modulated by the intensity and duration of treadmill exercise.
Key words
Treadmill exercise - cell proliferation - dentate gyrus - exercise intensity - exercise duration - immunohistochemisty - 5-bromo-2'-deoxyuridine
References
- 1 Altman J, Bayer S A. Migration and distribution of two populations of hippocampal granule cell precursors during the perinatal and postnatal period. J Comp Neurol. 1990; 301 365-381
- 2 Borer K T, Bestervelt L L, Mannheim M, Brosamer M B, Thompson M, Swamy U, Piper W N. Stimulation by voluntary exercise of adrenal glucocorticoid secretion in mature female hamsters. Physiol Behav. 1992; 51 713-718
- 3 Cameron H A, McKay R DG. Restoring production of hippocampal neurons in old age. Nature Neurosci. 1999; 2 894-897
- 4 Cameron H A, Tanapat P, Gould E. Adrenal steroids and N-methyl-D-aspartate receptor activation regulate neurogenesis in the dentate gyrus of adult rats through a common pathway. Neuroscience. 1998; 82 349-354
- 5 Eriksson P S, Perfilieva E, Bjork-Eriksson T, Alborn A M, Nordborg C, Peterson D A, Gage F H. Neurogenesis in the adult human hippocampus. Nat Med. 1998; 4 1313-1317
- 6 Gage F H, Kempermann G, Palmer T D, Peterson D A, Ray J. Multipotent progenitor cells in the adult dentate gyrus. J Neurobiol. 1998; 36 249-266
- 7 Gómez-Pinilla F, So V, Kesslak J P. Spatial learning and physical activity contribute to the induction of fibroblast growth factor: neural substrates for increased cognition associated with exercise. Neuroscience. 1998; 85 53-61
- 8 Gould E, Beylin A, Tanapat P, Reeves A, Shors T J. Learning enhances adult neurogenesis in the hippocampal formation. Nat Neurosci. 1999; 2 260-265
- 9 Johansson B B, Ohlsson A. Environmental, social interaction and physical activity as determinants of functional outcome after cerebral activity in the rat. Exp Nerol. 1996; 139 322-327
- 10 Kempermann G, Kuhn H G. More hippocampal neurons in adult mice living in an enriched environment. Nature. 1997; 386 493-495
- 11 Kim E H, Kim Y J, Lee H J, Huh Y B, Chung J H, Seo J C, Kang J E, Lee H J, Yim S V, Kim C J. Acupuncture increases cell proliferation in dentate gyrus after transient global ischemia in gerbils. Neurosci Lett. 2001; 297 21-24
- 12 Parent J M, Yu T W, Leibowitz R T, Geschwind D H, Sloviter R S, Lowenstein D H. Dentate granule cell neurogenesis is increased by seizures and contributes to aberrant network reorganization in the adult rat hippocampus. J Neurosci. 1997; 17 3727-3738
- 13 Trejo J L, Carro E, Torres-Aleman I. Circulating insulin-like growth factor I mediates exercise-induced increases in the number of new neurons in the adult. J Neurosci. 2001; 21 1628-1634
- 14 van Praag H, Christie B R, Sejnowski T J, Gage F H. Running enhances neurogenesis, learning, and long-term potentiation in mice. Proc Natl Acad Sci USA. 1999; 96 13 427-13 431
- 15 van Praag H, Kempermann G, Gage F H. Running increases cell proliferation and neurogenesis in the adult mouse dentate gyrus. Nat Neurosci. 1999; 2 266-270
C.-J. Kim
Department of Physiology · College of Medicine ·
Kyung Hee University
# 1 Hoigi-dong · Dongdaemoon-gu · Seoul
130-701 · South Korea ·
Phone: +82-2-961-0407
Fax: +82-2-964-2195
Email: changju@khu.ac.kr