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BACE抑制过程中中枢神经系统淀粉样β蛋白、可溶性APP-α和-β的动力学

CNS amyloid-β, soluble APP-α and -β kinetics during BACE inhibition.

作者信息

Dobrowolska Justyna A, Michener Maria S, Wu Guoxin, Patterson Bruce W, Chott Robert, Ovod Vitaliy, Pyatkivskyy Yuriy, Wildsmith Kristin R, Kasten Tom, Mathers Parker, Dancho Mandy, Lennox Christina, Smith Brad E, Gilberto David, McLoughlin Debra, Holder Daniel J, Stamford Andrew W, Yarasheski Kevin E, Kennedy Matthew E, Savage Mary J, Bateman Randall J

机构信息

Departments of Neurology and.

Safety and Laboratory Animal Resources.

出版信息

J Neurosci. 2014 Jun 11;34(24):8336-46. doi: 10.1523/JNEUROSCI.0540-14.2014.

Abstract

BACE, a β-secretase, is an attractive potential disease-modifying therapeutic strategy for Alzheimer's disease (AD) as it results directly in the decrease of amyloid precursor protein (APP) processing through the β-secretase pathway and a lowering of CNS amyloid-β (Aβ) levels. The interaction of the β-secretase and α-secretase pathway-mediated processing of APP in the rhesus monkey (nonhuman primate; NHP) CNS is not understood. We hypothesized that CNS inhibition of BACE would result in decreased newly generated Aβ and soluble APPβ (sAPPβ), with increased newly generated sAPPα. A stable isotope labeling kinetics experiment in NHPs was performed with a (13)C6-leucine infusion protocol to evaluate effects of BACE inhibition on CNS APP processing by measuring the kinetics of sAPPα, sAPPβ, and Aβ in CSF. Each NHP received a low, medium, or high dose of MBI-5 (BACE inhibitor) or vehicle in a four-way crossover design. CSF sAPPα, sAPPβ, and Aβ were measured by ELISA and newly incorporated label following immunoprecipitation and liquid chromatography-mass spectrometry. Concentrations, kinetics, and amount of newly generated APP fragments were calculated. sAPPβ and sAPPα kinetics were similar, but both significantly slower than Aβ. BACE inhibition resulted in decreased labeled sAPPβ and Aβ in CSF, without observable changes in labeled CSF sAPPα. ELISA concentrations of sAPPβ and Aβ both decreased and sAPPα increased. sAPPα increased by ELISA, with no difference by labeled sAPPα kinetics indicating increases in product may be due to APP shunting from the β-secretase to the α-secretase pathway. These results provide a quantitative understanding of pharmacodynamic effects of BACE inhibition on NHP CNS, which can inform about target development.

摘要

β-分泌酶(BACE)是一种颇具吸引力的潜在疾病修饰治疗策略,可用于治疗阿尔茨海默病(AD),因为它能直接减少淀粉样前体蛋白(APP)通过β-分泌酶途径的加工,并降低中枢神经系统(CNS)中淀粉样β蛋白(Aβ)的水平。目前尚不清楚在恒河猴(非人灵长类动物;NHP)中枢神经系统中,β-分泌酶和α-分泌酶途径介导的APP加工之间的相互作用。我们推测,对BACE的中枢神经系统抑制会导致新生成的Aβ和可溶性APPβ(sAPPβ)减少,而新生成的sAPPα增加。我们采用(13)C6-亮氨酸输注方案在NHP中进行了一项稳定同位素标记动力学实验,通过测量脑脊液中sAPPα、sAPPβ和Aβ的动力学来评估BACE抑制对中枢神经系统APP加工的影响。每只NHP在四向交叉设计中接受低、中、高剂量的MBI-5(BACE抑制剂)或赋形剂。通过酶联免疫吸附测定(ELISA)测量脑脊液中的sAPPα、sAPPβ和Aβ,并在免疫沉淀和液相色谱-质谱分析后测量新掺入的标记物。计算新生成的APP片段的浓度、动力学和量。sAPPβ和sAPPα的动力学相似,但均明显慢于Aβ。BACE抑制导致脑脊液中标记的sAPPβ和Aβ减少,而脑脊液中标记的sAPPα没有明显变化。ELISA检测的sAPPβ和Aβ浓度均降低,sAPPα增加。ELISA检测显示sAPPα增加,而标记的sAPPα动力学无差异,这表明产物增加可能是由于APP从β-分泌酶途径转向α-分泌酶途径。这些结果提供了对BACE抑制对NHP中枢神经系统药效学作用的定量理解,可为靶点开发提供参考。

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