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A Novel Dual Fluorochrome Near-Infrared Imaging Probe for Potential Alzheimer’s Enzyme Biomarkers-BACE1 and Cathepsin D

机译:一种新型的双荧光染料近红外成像探针可用于潜在的阿尔茨海默氏症酶生物标志物-BACE1和组织蛋白酶D

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摘要

A molecular imaging probe to fluorescently image the β-site of the amyloid precursor protein (APP) cleaving enzyme 1 (BACE1) and cathepsin D (CatD) enzymes associated with Alzheimer’s disease (AD) was designed and synthesized. This imaging probe was built upon iron oxide nanoparticles (cross-linked dextran iron oxide nanoparticles, or CLIO). Peptide substrates containing a terminal near-infrared fluorochrome (fluorophore emitting at 775 nm for CatD or fluorophore emitting at 669 nm for BACE1) were conjugated to the CLIO nanoparticles. The CatD substrate contained a phenylalanine-phenylalanine cleavage site more specific to CatD than BACE1. The BACE1 substrate contained the sequence surrounding the leucine-asparagine cleavage site of the BACE1 found in the Swedish mutation of APP, which is more specific to BACE1 than CatD. These fluorescently-labeled peptide substrates were then conjugated to the nanoparticle. The nanoparticle probes were purified by gel filtration, and their fluorescence intensities were determined using a fluorescence plate reader. The CatD peptide substrate demonstrated a 15.5-fold increase in fluorescence when incubated with purified CatD enzyme, and the BACE1 substrate exhibited a 31.5-fold increase in fluorescence when incubated with purified BACE1 enzyme. Probe specificity was also demonstrated in the human H4 neuroglioma cells and the H4 cells stably transfected with BACE1 in which the probe monitored enzymatic cleavage. In the H4 and H4-BACE1 cells, BACE1 and active CatD activity increased, an occurrence that was reflected in enzyme expression levels as determined by immunoblotting. These results demonstrate the applicability of this probe for detecting potential Alzheimer’s enzyme biomarkers.
机译:设计并合成了一种分子成像探针,用于对淀粉样前体蛋白(APP)裂解酶1(BACE1)和组织蛋白酶D(CatD)酶与阿尔茨海默氏病(AD)相关的β位进行荧光成像。该成像探针基于氧化铁纳米颗粒(交联的葡聚糖氧化铁纳米颗粒或CLIO)构建。将包含末端近红外荧光染料(对于CatD在775 nm处发射的荧光团或对于BACE1在669 nm处发射的荧光团)的肽底物偶联到CLIO纳米粒子上。 CatD底物包含比BACE1更特异于CatD的苯丙氨酸-苯丙氨酸裂解位点。 BACE1底物包含在瑞典的APP突变中发现的BACE1的亮氨酸-天冬酰胺切割位点周围的序列,该序列比CatD对BACE1更具特异性。然后将这些荧光标记的肽底物缀合至纳米颗粒。通过凝胶过滤纯化纳米颗粒探针,并使用荧光板读数器测定其荧光强度。当与纯化的CatD酶孵育时,CatD肽底物的荧光增强了15.5倍,而与纯化的BACE1酶孵育时,BACE1底物的荧光增强了31.5倍。在人H4神经胶质瘤细胞和用BACE1稳定转染的H4细胞中也证实了探针特异性,其中探针监测酶促裂解。在H4和H4-BACE1细胞中,BACE1和活性CatD活性增加,这一现象反映在通过免疫印迹确定的酶表达水平上。这些结果证明该探针可用于检测潜在的阿尔茨海默氏症的生物标记物。

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