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September 1, 1995Journal of Biological Chemistry79 citationsOpen Access

Amyloid β-Protein Aggregation Nullifies Its Pathologic Properties in Cultured Cerebrovascular Smooth Muscle Cells

JDJudianne Davis-SalinasWNWilliam E. Van Nostrand

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Abstract

Alzheimer's disease and related disorders are characterized by deposition of aggregated amyloid beta-protein (A beta) and accompanying pathologic changes in the neuropil and in the walls of cerebral blood vessels. A beta induces neurotoxicity in vitro, and this effect is markedly enhanced when the peptide is preaggregated. Recently, we reported that freshly solubilized A beta 1-42 can induce cellular degeneration and a striking increase in the levels of cellular amyloid beta-protein precursor and soluble A beta peptide in cultured cerebrovascular smooth muscle cells (Davis-Salinas, J., Saporito-Irwin, S. M., Cotman, C. W., and Van Nostrand, W. E. (1995) J. Neurochem. 65, 931-934). In the present study, we show that preaggregation of A beta 1-42 abolishes the ability of the peptide to induce these cellular pathologic responses in these cells in vitro. These findings suggest that distinct mechanisms for A beta-induced cytotoxicity exist for cultured neurons and cerebrovascular smooth muscle cells, supporting that different processes may be involved in the parenchymal and cerebrovascular pathology of Alzheimer's disease and related disorders.

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Cite This Study

Davis-Salinas et al. (1995) studied this question.

synapsesocial.com/papers/6a22c20b9433475d0a11df3chttps://doi.org/10.1074/jbc.270.36.20887
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