4.5 Article

The Effects of Enhanced Zinc on Spatial Memory and Plaque Formation in Transgenic Mice

期刊

JOURNAL OF ALZHEIMERS DISEASE
卷 18, 期 3, 页码 565-579

出版社

IOS PRESS
DOI: 10.3233/JAD-2009-1162

关键词

Alzheimer's disease; amyloid plaques; metals; Morris water maze; nutrition; spatial memory; Tg2576; transgenic mice; Westaway; zinc

资金

  1. George Mason University
  2. U. S. Geological Survey
  3. Research Assistantship at George Mason University
  4. NHMRC

向作者/读者索取更多资源

There is considerable evidence suggesting that metals play a central role in the pathogenesis of Alzheimer's disease. Reports suggest that elevated dietary metals may both precipitate and potentiate an Alzheimer's disease phenotype. Despite this, there remain few studies that have examined the behavioral consequences of elevated dietary metals in wild type and Alzheimer's disease animals. To further investigate this in the current study, two separate transgenic models of AD (Tg2576 and TgCRND8), together with wild type littermates were administered 10 ppm (0.153 mM) Zn. Tg2576 animals were maintained on a zinc-enriched diet both pre- and postnatally until 11 months of age, while TgCRND8 animals were treated for five months following weaning. Behavioral testing, consisting of Atlantis and moving platform versions of the Morris water maze, were conducted at the end of the study, and tissues were collected for immunohistochemical analysis of amyloid-beta burden. Our data demonstrate that the provision of a zinc-enriched diet potentiated Alzheimer-like spatial memory impairments in the transgenic animals and was associated with reduced hippocampal amyloid-beta plaque deposits. Zinc-related behavioral deficits were also demonstrated in wild type mice, which were sometimes as great as those present in the transgenic animals. However, zinc-related cognitive impairments in transgenic mice were greater than the summation of zinc effects in the wild type mice and the transgene effects.

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