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首页> 外文期刊>Biotechnology and Bioengineering >Can Size Alone Explain Some of the Differences in Toxicity Between beta-Amyloid Oligomers and Fibrils?
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Can Size Alone Explain Some of the Differences in Toxicity Between beta-Amyloid Oligomers and Fibrils?

机译:大小单独可以解释β-淀粉样蛋白低聚物和原纤维之间的某些毒性差异吗?

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beta-Amyloid (A beta) peptide is believed to play a key role in the mechanism of Alzheimer's disease (AD). A beta tends to aggregate to form amyloid fibrils. A variety of evidence indicates that A beta aggregates are toxic in vitro and in vivo. An early "A beta hypothesis" postulated that AD was the consequence of neuron death induced by insoluble deposits of large A beta fibrils. Newer findings indicate that small soluble A beta oligomers are the neurotoxic species, yet their structure is still unknown. Many researchers have tried to probe the differences in molecular structure between A beta oligomers, protofibrils, and fibrils that give rise to their unique toxicities, but with limited success. In this report, we examine the hypothesis that differences in the toxicity of different aggregated A beta species are the result of differences in species concentration and diffusivity. Using a simple mathematical analysis based on the assumption of a diffusion-limited reaction, we demonstrate that near 10-fold differences in toxicity between spherical oligomers and fibrils can be explained from size and concentration arguments. While this work does not suggest that A beta oligomers and fibrils have identical molecular structures, it highlights the possibility that simple physical phenomena may contribute to the biological processes induced by A beta. Biotechnol. Bioeng. 2010;106: 333-337.
机译:据信β-淀粉样蛋白(A beta)肽在阿尔茨海默氏病(AD)的机制中起关键作用。 β倾向于聚集形成淀粉样原纤维。各种证据表明,Aβ聚集体在体外和体内均具有毒性。早期的“ Aβ假说”假设AD是大Aβ原纤维的不溶性沉积物诱导的神经元死亡的结果。最新发现表明,小的可溶性Aβ低聚物是神经毒性物质,但其结构仍是未知的。许多研究人员试图探究Aβ低聚物,原纤维和原纤维之间分子结构的差异,从而引起其独特的毒性,但取得的成功有限。在本报告中,我们检验了以下假设:不同聚集的A beta物种的毒性差异是物种浓度和扩散系数差异的结果。使用基于扩散受限反应的假设的简单数学分析,我们证明了球形寡聚物和原纤维之间毒性的近10倍差异可以通过大小和浓度参数来解释。尽管这项工作并不表明A beta低聚物和原纤维具有相同的分子结构,但它强调了简单的物理现象可能有助于A beta诱导的生物过程的可能性。生物技术。生恩2010; 106:333-337。

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