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Beneficial Effect of Antibodies against β- Secretase Cleavage Site of App on Alzheimer’s-Like Pathology in Triple-Transgenic Mice

机译:抗体产生的有益效应对阿尔茨海默氏症上样病理应用的β-分泌酶裂解网站在三转基因小鼠

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摘要

The toxicity of amyloid β and tau, the two hallmark proteins in Alzheimer’s disease (AD), has been extensively studied individually. Recently new data suggest their possible interactions and synergistic effects in the disease. In this study, we investigate the ability of antibodies against the β secretase cleavage site on APP, named BBS1, to affect tau pathology, besides their well established effect on intracellular Aβ and amyloid load. For this purpose we treated the triple transgenic mice model of AD (3x Tg-AD) with mAb BBS1 intracerebroventricularly, using mini osmotic pumps for one month. The experimental data demonstrated reduction in total and phosphorylated tau levels, explained by significant reduction in GSK3β which phosphorylates tau on sites recognized by antibodies against PHF1 and AT-8. The treatment increased the cognitive capabilities and reduced the brain inflammation levels which accompany AD pathology. The data showing that tau pathology was significantly reduced by BBS1 antibodies suggest a close interaction between tau and Aβ in the development of AD, and may serve as an efficient novel immunotherapy against both hallmarks of this disease.
机译:淀粉样蛋白β和tau是阿尔茨海默氏病(AD)的两个标志性蛋白,其毒性已被广泛研究。最近的新数据表明它们在疾病中可能的相互作用和协同作用。在这项研究中,我们研究了针对APP上称为βBBS1的β分泌酶切割位点的抗体影响tau病理的能力,以及它们对细胞内Aβ和淀粉样蛋白负荷的良好作用。为此,我们使用微型渗透泵在脑室内用mAb BBS1处理了三重转基因小鼠AD模型(3x Tg-AD),使用了一个月。实验数据表明总tau和磷酸化tau水平降低,这可以通过GSK3β的显着降低来解释,GSK3β可以在抗PHF1和AT-8抗体识别的位点上磷酸化tau。这种治疗提高了认知能力,并减少了AD病理伴随的脑部炎症水平。表明tau病理学被BBS1抗体显着降低的数据表明tau和Aβ在AD的发展过程中密切相互作用,并且可以作为针对这种疾病的两个特征的有效新型免疫疗法。

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