4.6 Article

Amyloid-β peptide remnants in AN-1792-immunized Alzheimer's disease patients -: A biochemical analysis

Journal

AMERICAN JOURNAL OF PATHOLOGY
Volume 169, Issue 3, Pages 1048-1063

Publisher

AMER SOC INVESTIGATIVE PATHOLOGY, INC
DOI: 10.2353/ajpath.2006.060269

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Funding

  1. NIA NIH HHS [R01 AG-19795, R01 AG-18440, P30 AG-19610, P50 AG005131, AG-05131, P30 AG019610, R01 AG019795, R01 AG018440] Funding Source: Medline

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Experiments with amyloid-beta (A beta)-42-inimunized transgenic mouse models of Alzheimer's disease have revealed amyloid plaque disruption and apparent cognitive function recovery. Neuropathological examination of patients vaccinated against purified A beta-42 (AN-1792) has demonstrated that senile plaque disruption occurred in immunized humans as well. Here, we examined tissue histology and quantified and biochemically characterized the remnant amyloid peptides in the gray and white matter and lepto-meningeal/cortical vessels of two AN-1792-vaccinated patients, one of whom developed meningoencephalitis. Compact core and diffuse amyloid deposits in both vaccinated individuals were focally absent in some regions. Although parenchymal amyloid was focally disaggregated, vascular deposits were relatively preserved or even increased. immunoassay revealed that total soluble amyloid levels were sharply elevated in vaccinated patient gray and white matter compared with Alzheimer's disease cases. Our exper-iments suggest that although immunization disrupted amyloid deposits, vascular capture prevented large-scale egress of A beta peptides. Trapped, solubilized amyloid peptides; may ultimately have cascading toxic effects on cerebrovascular, gray and white matter tissues. Anti-amyloid immunization may be most effective not as therapeutic or mitigating measures but as a prophylactic measure when A beta deposition is still minimal. This may allow A beta mobilization under conditions in which drainage and degradation of these toxic peptides is efficient.

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