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  5. The behaviour of caeruloplasmin in stored human extracellular fluids in relation to ferroxidase II activity, lipid peroxidation and phenanthroline-detectable copper

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Article
English
1985

The behaviour of caeruloplasmin in stored human extracellular fluids in relation to ferroxidase II activity, lipid peroxidation and phenanthroline-detectable copper

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English
1985
Biochemical Journal
Vol 230 (2)
DOI: 10.1042/bj2300517

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Barry Halliwell
Barry Halliwell

National University of Singapore

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John M.C. Gutteridge
Paul G. Winyard
David R. Blake
+3 more

Abstract

No Cu(II) ion is measurable in human serum or synovial fluid by the phenanthroline assay. On storage of human serum or synovial fluid at 4 degrees C, phenanthroline-detectable copper appears, lipid peroxidation occurs, ferroxidase I activity declines and ferroxidase II activity rises, yet there is no fall in immunologically detectable caeruloplasmin. Storage of body fluids at −20 degrees C or −70 degrees C slows, but does not prevent, these deteriorative changes. It is suggested that the presence of low-molecular-mass Cu(II) ion complexes, ferroxidase II activity, ‘cytotoxic factors’ and ‘immunosuppressive factors’ in body fluids may be, in part or in whole, an artifact of the storage and handling of the fluids. A report [Blake, Blann, Bacon, Farr, Gutteridge & Halliwell (1983) Clin. Sci. 64, 551-553] that the caeruloplasmin present in rheumatoid synovial fluid is deficient in ferroxidase activity is shown to be such an artifact. It is strongly recommended that all such experiments be performed upon freshly taken fluid samples.

How to cite this publication

John M.C. Gutteridge, Paul G. Winyard, David R. Blake, J. Lunec, S Brailsford, Barry Halliwell (1985). The behaviour of caeruloplasmin in stored human extracellular fluids in relation to ferroxidase II activity, lipid peroxidation and phenanthroline-detectable copper. Biochemical Journal, 230(2), pp. 517-523, DOI: 10.1042/bj2300517.

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Publication Details

Type

Article

Year

1985

Authors

6

Datasets

0

Total Files

0

Language

English

Journal

Biochemical Journal

DOI

10.1042/bj2300517

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