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Thiamine deficiency in vivo produces fiber cell degeneration in mouse lenses.

作者信息

Frederikse P H, Farnsworth P, Zigler J S

机构信息

Laboratory of Mechanisms of Ocular Disease, National Eye Institute, Bethesda, Maryland, USA.

出版信息

Biochem Biophys Res Commun. 1999 May 19;258(3):703-7. doi: 10.1006/bbrc.1999.0560.

Abstract

Thiamine (Vitamin B1) is a co-factor for enzymes key in bridging aerobic and anaerobic metabolism. One such enzyme, transketolase, catalyzes two of three reactions for entry into the pentose-phosphate pathway, a major source of chemical reducing power. Thus, thiamine deprivation (TD) is considered a classic model of systemic oxidative stress and is linked with degenerative diseases. TD in mice and rats produces neurodegeneration with Alzheimer's disease characteristics. Age-related disease of the lens, commonly cataract, is also linked with thiamine and oxidative stress. To test the effects of TD on mice, we used a previously defined protocol involving a thiamine free diet and a thiamine antagonist. After 12 days, lens fiber cell degeneration was observed primarily along the lens posterior beneath the intact capsule. These regions exhibited a localized increased expression of Alzheimer precursor protein, Abeta peptides, and presenilin 1. These data indicate that TD in mice produces fiber cell degeneration and suggest common mechanisms for TD-induced lens fiber and neuronal cell degeneration.

摘要

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