Analysis of HNE metabolism in CNS models
The formation and toxicity of trans-4-hydroxy-2-nonenal in the central nervous system is well documented. However, the metabolism of HNE in the central nervous system (CNS) is not clear. HNE metabolism in the CNS appears to be different from that in other tissues and organs and may be dependent on t...
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Published in | Redox report : communications in free radical research Vol. 12; no. 1-2; pp. 16 - 19 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
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England
Taylor & Francis
01.02.2007
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Abstract | The formation and toxicity of trans-4-hydroxy-2-nonenal in the central nervous system is well documented. However, the metabolism of HNE in the central nervous system (CNS) is not clear. HNE metabolism in the CNS appears to be different from that in other tissues and organs and may be dependent on the cell type and subcellular environment. Our data show that HNE metabolism is affected by the stereocenter of HNE and that oxidation of HNE may be a primary route of metabolism. Further metabolic analysis of HNE disposition is needed to clarify which pathways are truly important in normal and pathological states in the CNS. |
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AbstractList | The formation and toxicity of trans-4-hydroxy-2-nonenal in the central nervous system is well documented. However, the metabolism of HNE in the central nervous system (CNS) is not clear. HNE metabolism in the CNS appears to be different from that in other tissues and organs and may be dependent on the cell type and subcellular environment. Our data show that HNE metabolism is affected by the stereocenter of HNE and that oxidation of HNE may be a primary route of metabolism. Further metabolic analysis of HNE disposition is needed to clarify which pathways are truly important in normal and pathological states in the CNS. |
Author | Brichac, Jiri Picklo, Matthew J. Long, Eric Kubatova, Alena Honzatko, Ales |
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References | CIT0010 CIT0020 CIT0001 CIT0012 CIT0011 Picklo MJ (CIT0021) 2001; 60 Hiratsuka A (CIT0015) 2001; 355 Hashimoto M (CIT0016) 2003; 278 CIT0003 CIT0014 CIT0002 CIT0013 CIT0004 CIT0006 CIT0017 CIT0009 CIT0008 |
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SubjectTerms | Aldehydes - metabolism Alzheimer Disease - metabolism Animals CENTRAL NERVOUS SYSTEM Central Nervous System - physiology Humans Mitochondria, Heart - metabolism Models, Neurological Oxidation-Reduction Parkinson Disease - metabolism STEREOCENTER TRANS-4-HYDROXY-2-NONENAL |
Title | Analysis of HNE metabolism in CNS models |
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