Amyloid beta-peptide-associated free radical oxidative stress, neurotoxicity, and Alzheimer's disease.

作者: D.Allan Butterfield , Servet M. Yatin , Sridhar Varadarajan , Tanuja Koppal

DOI: 10.1016/S0076-6879(99)09050-3

关键词: Alzheimer's diseaseAmyloid betaLipid peroxidationCancer researchOxidative stressBiochemistryProtein oxidationNeurotoxicityMitochondrionFree-radical theory of agingChemistry

摘要: Given the increasing evidence of oxidative stress in AD brain and studies from different perspectives that appear to show a converging, central role for A beta pathogenesis etiology AD, insight into beta-associated free radical will likely lead greater understanding and, potentially, better therapeutic strategies this disorder. This article outlined methods investigate markers induced by membrane systems. Especially important are protein oxidation, lipid peroxidation, ROS generation beta. Oxidative its sequelae related both necrotic apoptotic mechanisms neurotoxicity, may be fundamental importance Alzheimer's disease pathogenesis. The described here provide some means investigating possibility.

参考文章(45)
D. Allan Butterfield, Spin Labeling in Disease Biological Magnetic Resonance. pp. 1- 78 ,(1982) , 10.1007/978-1-4615-6540-6_1
Ram Subramaniam, Tanuja Koppal, Michael Green, Servet Yatin, Brad Jordan, Jennifer Drake, D. Allan Butterfield, The free radical antioxidant vitamin E protects cortical synaptosomal membranes from amyloid beta-peptide(25-35) toxicity but not from hydroxynonenal toxicity: relevance to the free radical hypothesis of Alzheimer's disease. Neurochemical Research. ,vol. 23, pp. 1403- 1410 ,(1998) , 10.1023/A:1020754807671
Thomas J. Montine, Doyle G. Graham, Warren J. Strittmatter, Margaret E. Martin, Ventkataraman Amarnath, E-4-hydroxy-2-nonenal is cytotoxic and cross-links cytoskeletal proteins in P19 neuroglial cultures American Journal of Pathology. ,vol. 148, pp. 89- 93 ,(1996)
W. Bruce Rowe, Robert A. Ronzio, Vaira P. Wellner, Alton Meister, [129] Glutamine synthetase (sheep brain) Methods in Enzymology. ,vol. 17, pp. 900- 910 ,(1970) , 10.1016/0076-6879(71)17304-1
Rodney L. Levine, Joy A. Williams, Earl P. Stadtman, Emily Shacter, [37] Carbonyl assays for determination of oxidatively modified proteins Methods in Enzymology. ,vol. 233, pp. 346- 357 ,(1994) , 10.1016/S0076-6879(94)33040-9
Takami Tomiyama, Akira Shoji, Ken-ichiro Kataoka, Yorimasa Suwa, Satoshi Asano, Hideshi Kaneko, Noriaki Endo, Inhibition of amyloid beta protein aggregation and neurotoxicity by rifampicin. Its possible function as a hydroxyl radical scavenger. Journal of Biological Chemistry. ,vol. 271, pp. 6839- 6844 ,(1996) , 10.1074/JBC.271.12.6839
Joseph S. Beckman, Jun Chen, Harry Ischiropoulos, John P. Crow, [23] Oxidative chemistry of peroxynitrite Methods in Enzymology. ,vol. 233, pp. 229- 240 ,(1994) , 10.1016/S0076-6879(94)33026-3
A. Lewis Farr, Oliver H. Lowry, Rose J. Randall, Nira J. Rosebrough, Protein Measurement with the Folin Phenol Reagent Journal of Biological Chemistry. ,vol. 193, pp. 265- 275 ,(1951)
Patrick C. May, Bruce D. Gitter, Diane C. Waters, Linda K. Simmons, Gerald W. Becker, Jennifer S. Small, Paula M. Robison, β-amyloid peptide in vitro toxicity: Lot-to-lot variability Neurobiology of Aging. ,vol. 13, pp. 605- 607 ,(1992) , 10.1016/0197-4580(92)90064-5
Deborah Blacker, Rudolph E. Tanzi, The genetics of Alzheimer disease: current status and future prospects. JAMA Neurology. ,vol. 55, pp. 294- 296 ,(1998) , 10.1001/ARCHNEUR.55.3.294