Abstract
Plaques containing beta-amyloid (Abeta) peptides are one of the pathological features of Alzheimer's disease, and the reduction of Abeta is considered a primary therapeutic target. Amyloid clearance by anti-Abeta antibodies has been reported after immunization, and recent data have shown that the antibodies may act as a peripheral sink for Abeta, thus altering the periphery/brain dynamics. Here we show that peripheral treatment with an agent that has high affinity for Abeta (gelsolin or GM1) but that is unrelated to an antibody or immune modulator reduced the level of Abeta in the brain, most likely because of a peripherally acting effect. We propose that in general, compounds that sequester plasma Abeta could reduce or prevent brain amyloidosis, which would enable the development of new therapeutic agents that are not limited by the need to penetrate the brain or evoke an immune response.
MeSH Terms
Alzheimer Disease/drug therapy
Amyloid beta-Peptides/blood,metabolism
Amyloid beta-Protein Precursor/genetics
Amyloidosis/drug therapy,metabolism,pathology
Animals
Brain/metabolism
Female
G(M1) Ganglioside/administration & dosage,metabolism,pharmacology
Gelsolin/administration & dosage,metabolism,pharmacology
Injections, Intraperitoneal
Male
Membrane Proteins/genetics
Mice
Mutation
Presenilin-1
Chemicals
Amyloid beta-Peptides
Amyloid beta-Protein Precursor
Gelsolin
Membrane Proteins
Presenilin-1
G(M1) Ganglioside
Authors & Affiliations
12 authors, click to expand affiliations / ORCID
Matsuoka Yasuji
The Center for Dementia Research, Nathan Kline Institute, Orangeburg, New York 10962, USA.
[email protected]
Saito Mitsuo
LaFrancois John
Saito Mariko
Gaynor Kate
Olm Vicki
Wang Lili
Casey Evelyn
Lu Yifan
Shiratori Chiharu
Lemere Cynthia
Duff Karen
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