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콜레스테롤 산화생성물에 의해 유발된뇌 Synaptosome 기능이상에 미치는Tyrphostin AG126의 억제 효과open accessInhibitory Effect of Tyrphostin AG126 on Brain Synaptosomal Dysfunction Induced by Cholesterol Oxidation Products

Authors
홍기무한정호김두응송진호이정수
Issue Date
Aug-2008
Publisher
대한신경과학회
Keywords
Synaptosomes; Oxysterols; Tyrphostin AG126; Glutamate; Ca2+; Na+/K+-ATPase
Citation
대한신경과학회지, v.26, no.3, pp 231 - 238
Pages
8
Journal Title
대한신경과학회지
Volume
26
Number
3
Start Page
231
End Page
238
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/31242
ISSN
1225-7044
Abstract
Background: Formation of cholesterol oxidation products is a suggested mechanism of neurodegenerative disorders. Neuronal cell death is mediated by an increased release of excitotoxic glutamate from the presynaptic nerve endings. Tyrosine-specific protein kinases modulate neurotransmitter release at the nerve terminals. Tyrphostin AG126 has anti-inflammatory and cytoprotective effects. However, it remains uncertain whether tyrphostin AG126 has a preventive effect on the alteration of nerve terminal function induced by cholesterol oxidation products. Methods: The present study was performed to assess the effect of cholesterol oxidation products against nerve terminal function using synaptosomes isolated from rat cerebrum. We determined the preventive effect of tyrphostin AG126 against oxysterol toxicity by measuring the effects on the glutamate release, depolarization of the membrane potential, changes in Ca2+ levels, and Na+/K+-ATPase activity. Results: Synaptosomes treated with 7-ketocholesterol or 25-hydroxycholesterol exhibited a sustained release of glutamate, depolarization of membrane potential, early rapid increase in cellular Ca2+ levels and decrease in Na+/K+-ATPase activity. Those responses were concentration-dependent. Treatment of tyrphostin AG126 interfered with alteration of synaptosomal functions and decrease in Na+/K+-ATPase activity induced by 7-ketocholesterol or 25-hydroxycholesterol. Conclusions: The results show that 7-ketocholesterol and 25-hydroxycholesterol seem to cause the release of glutamate by inducing depolarization of the membrane potential and early rapid increase in cellular Ca2+ levels and by inactivating Na+/K+-ATPase in the cerebral synaptosomes. Treatment of tyrphostin AG126 may prevent the oxysterol-induced nerve terminal dysfunction.
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