급성 부동 스트레스 후 척수 회색질에서 Peroxiredoxin I 및 III의 발현 변화

Purpose: Many stresses produce reactive oxygen species and bring about mechanism of antioxidant reaction. Cytokine and a neurotransmitter through the cell membrane, as well as signal transduction through the cell membrane, are used for various pathological condition of the brain, such as neurodegene...

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Veröffentlicht in:Daehan oe'sang haghoeji 2006, Vol.19 (2), p.105-112
Hauptverfasser: 백남현, 곽승수, 이동석, 이영호, Paek, Nam-Hyun, Kwak, Seung-Soo, Lee, Dong-Seok, Lee, Young-Ho
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container_end_page 112
container_issue 2
container_start_page 105
container_title Daehan oe'sang haghoeji
container_volume 19
creator 백남현
곽승수
이동석
이영호
Paek, Nam-Hyun
Kwak, Seung-Soo
Lee, Dong-Seok
Lee, Young-Ho
description Purpose: Many stresses produce reactive oxygen species and bring about mechanism of antioxidant reaction. Cytokine and a neurotransmitter through the cell membrane, as well as signal transduction through the cell membrane, are used for various pathological condition of the brain, such as neurodegenerative disease. There are several antioxidant enzymes in cells (superoxcide dismutase, glutathion peroxidasae, peroxiredoxin catalase, etc.) Methods: This study used single- or double-label immunohistochemical techniques to analyze mouse spinal neuron cells expressing Prx I and Prx III after acute mobilization stress. Results: Prx I was observed in dendritic cell of the gray matter of the spinal cord, and Prx III was observed in the cytoplasm of the GM of the spinal cord. Conclusion: The results of this study will help to explain differences of expression in the distributions of the peroxiredoxin enzymes of the spinal cord.
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title 급성 부동 스트레스 후 척수 회색질에서 Peroxiredoxin I 및 III의 발현 변화
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