Mechanisms of aluminium neurotoxicity in oxidative stress-induced ...
Mechanisms of aluminium neurotoxicity in oxidative stress-induced ... Mechanisms of aluminium neurotoxicity in oxidative stress-induced ...
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REFERENCES Grune T., Jung T., Merker K. and Davies K. J. (2004) Decreased proteolysis caused by protein aggregates, inclusion bodies, plaques, lipofuscin, ceroid, and ‘aggresomes’ during oxidative stress, aging, and disease. Int. J. Biochem. Cell Biol. 36, 2519–2530. Guillard O., Fauconneau B., Olichon D., Dedieu G. and Deloncle R. (2004) Hyperaluminemia in a woman using aluminum-containing antiperspirant for 4 years. Am. J. Med. 117, 956–959. Gupta A. and Shukla G. S. (1995) Effect of chronic aluminum exposure on the levels of conjugated dienes and enzymatic antioxidants in hippocampus and whole brain of rat. Bull. Environ. Contam. Toxicol. 55, 716–722. Gupta V. B., Anitha S., Hegde M. L., Zecca L., Garruto R. M., Ravid R., Shankar S. K., Stein R., Shanmugavelu P. and Jagannatha Rao K. S. (2005) Aluminium in Alzheimer’s disease: are we still at a crossroad? Cell Mol. Life Sci. 62, 143–158. Gutteridge J. M. C., Quinlan G. J., Clark I. and Halliwell B. (1985) Aluminium salts accelerate peroxidation of membrane lipids stimulated by iron salts. Biochem. Biophys. Acta 835, 441–447. Halliwell B. (1992) Reactive oxygen species and the central nervous system. J. Neurochem. 59, 1609–1623. Halliwell B. and Gutteridge J. M. (1985) The importance of free radicals and catalytic metal ions in human diseases. Mol. Aspects Med. 8, 89–193. Halliwell B. and Gutteridge J. M. C. (2003) Free radicals in biology and medicine. Oxford University, New York. Halliwell B. and Gutteridge J. M. C. (2006) Free Radicals in Biology and Medicine (4th edn). Oxford University Press, Oxford. Hallman H., Lange J., Olson L., Stromberg I. and Jonsson G. (1985) Neurochemical and histochemical characterization of neurotoxic effects of 1-methyl-4-phenyl-1,2,3,6- tetrahydropyridine on brain catecholamine neurones in the mouse. J. Neurochem. 44, 117–127. 201
- Page 173: SUMMARY
- Page 176 and 177: SUMMARY values were attained at 48
- Page 178 and 179: SUMMARY neurodegeneration in the DA
- Page 181 and 182: CONCLUSIONS The results obtained in
- Page 183: 13) Aluminium does affect neither M
- Page 187 and 188: RESUMEN RESUMEN Desde el punto de v
- Page 189 and 190: RESUMEN zonas cerebrales excepto en
- Page 191: CONCLUSIONES
- Page 194 and 195: CONCLUSIONES Capítulo 2 4) La admi
- Page 196 and 197: CONCLUSIONES 172 En base a las conc
- Page 199 and 200: Publications as a direct result fro
- Page 201: REFERENCES
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REFERENCES<br />
Grune T., Jung T., Merker K. and Davies K. J. (2004) Decreased proteolysis caused by prote<strong>in</strong><br />
aggregates, <strong>in</strong>clusion bodies, plaques, lip<strong>of</strong>usc<strong>in</strong>, ceroid, and ‘aggresomes’ dur<strong>in</strong>g <strong>oxidative</strong><br />
<strong>stress</strong>, ag<strong>in</strong>g, and disease. Int. J. Biochem. Cell Biol. 36, 2519–2530.<br />
Guillard O., Fauconneau B., Olichon D., Dedieu G. and Deloncle R. (2004) Hyperalum<strong>in</strong>emia <strong>in</strong> a<br />
woman us<strong>in</strong>g alum<strong>in</strong>um-conta<strong>in</strong><strong>in</strong>g antiperspirant for 4 years. Am. J. Med. 117, 956–959.<br />
Gupta A. and Shukla G. S. (1995) Effect <strong>of</strong> chronic alum<strong>in</strong>um exposure on the levels <strong>of</strong><br />
conjugated dienes and enzymatic antioxidants <strong>in</strong> hippocampus and whole bra<strong>in</strong> <strong>of</strong> rat. Bull.<br />
Environ. Contam. Toxicol. 55, 716–722.<br />
Gupta V. B., Anitha S., Hegde M. L., Zecca L., Garruto R. M., Ravid R., Shankar S. K., Ste<strong>in</strong> R.,<br />
Shanmugavelu P. and Jagannatha Rao K. S. (2005) Alum<strong>in</strong>ium <strong>in</strong> Alzheimer’s disease: are<br />
we still at a crossroad? Cell Mol. Life Sci. 62, 143–158.<br />
Gutteridge J. M. C., Qu<strong>in</strong>lan G. J., Clark I. and Halliwell B. (1985) Alum<strong>in</strong>ium salts accelerate<br />
peroxidation <strong>of</strong> membrane lipids stimulated by iron salts. Biochem. Biophys. Acta 835,<br />
441–447.<br />
Halliwell B. (1992) Reactive oxygen species and the central nervous system. J. Neurochem. 59,<br />
1609–1623.<br />
Halliwell B. and Gutteridge J. M. (1985) The importance <strong>of</strong> free radicals and catalytic metal ions<br />
<strong>in</strong> human diseases. Mol. Aspects Med. 8, 89–193.<br />
Halliwell B. and Gutteridge J. M. C. (2003) Free radicals <strong>in</strong> biology and medic<strong>in</strong>e. Oxford<br />
University, New York.<br />
Halliwell B. and Gutteridge J. M. C. (2006) Free Radicals <strong>in</strong> Biology and Medic<strong>in</strong>e (4th edn).<br />
Oxford University Press, Oxford.<br />
Hallman H., Lange J., Olson L., Stromberg I. and Jonsson G. (1985) Neurochemical and<br />
histochemical characterization <strong>of</strong> neurotoxic effects <strong>of</strong> 1-methyl-4-phenyl-1,2,3,6-<br />
tetrahydropyrid<strong>in</strong>e on bra<strong>in</strong> catecholam<strong>in</strong>e neurones <strong>in</strong> the mouse. J. Neurochem. 44,<br />
117–127.<br />
201