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在一种可诱导的神经退行性变小鼠模型中,脑脊液和血清中的神经丝轻链是神经元损伤的生物标志物。

NF-L in cerebrospinal fluid and serum is a biomarker of neuronal damage in an inducible mouse model of neurodegeneration.

作者信息

Brureau Anthony, Blanchard-Bregeon Véronique, Pech Catherine, Hamon Stéphanie, Chaillou Pascal, Guillemot Jean-Claude, Barneoud Pascal, Bertrand Philippe, Pradier Laurent, Rooney Thomas, Schussler Nathalie

机构信息

Sanofi R&D, Neuroscience Research Therapeutic Area, Neurodegeneration Cluster, 1 Avenue Pierre Brossolette, Chilly Mazarin, 91380, France; Pharnext, 11 rue des Peupliers, 92130 Issy-les-Moulineaux, France.

Sanofi R&D, Translational Sciences Unit, Chilly Mazarin, 91380, France.

出版信息

Neurobiol Dis. 2017 Aug;104:73-84. doi: 10.1016/j.nbd.2017.04.007. Epub 2017 Apr 6.

Abstract

Accumulation of neurofilaments (NFs), the major constituents of the neuronal cytoskeleton, is a distinctive feature of neurological diseases and several studies have shown that soluble NFs can be detected in the cerebrospinal fluid (CSF) of patients with neurological diseases, such as multiple sclerosis and frontotemporal dementia. Here we have used an inducible transgenic mouse model of neurodegeneration, CamKII-TetOp25 mice, to evaluate whether NF-L levels in CSF or blood can be used as a biochemical biomarker of neurodegeneration. Induction of p25 transgene brain expression led to increase in CSF and serum NF-L levels that correlated with ongoing neurodegeneration. Switching off p25 prevented further increases in both CSF and serum NF-L levels and concomitantly stopped the progression of neurodegeneration. The levels of CSF NF-L detected in p25 mice are about 4-fold higher than the CSF levels detected in patients with chronic neurodegenerative diseases, such as symptomatic FTD (bvFTD). In addition, our data indicate that the NF-L detected in CSF is most likely a cleaved form of NF-L. These results suggest that CSF and serum NF-L are of interest to be further explored as potential translational dynamic biomarkers of neurodegeneration or as pharmacodynamics biomarkers at least in preclinical animal studies.

摘要

神经丝(NFs)是神经元细胞骨架的主要成分,其积累是神经疾病的一个显著特征,多项研究表明,在患有神经疾病(如多发性硬化症和额颞叶痴呆)的患者脑脊液(CSF)中可检测到可溶性神经丝。在此,我们使用了一种神经退行性变的诱导性转基因小鼠模型——CamKII-TetOp25小鼠,来评估脑脊液或血液中的神经丝轻链(NF-L)水平是否可作为神经退行性变的生化生物标志物。p25转基因在大脑中的表达诱导导致脑脊液和血清中NF-L水平升高,这与正在进行的神经退行性变相关。关闭p25可阻止脑脊液和血清中NF-L水平的进一步升高,并同时阻止神经退行性变的进展。在p25小鼠中检测到的脑脊液NF-L水平比在患有慢性神经退行性疾病(如症状性额颞叶痴呆(bvFTD))的患者中检测到的脑脊液水平高约4倍。此外,我们的数据表明,在脑脊液中检测到的NF-L很可能是NF-L的一种裂解形式。这些结果表明,脑脊液和血清NF-L至少在临床前动物研究中作为神经退行性变的潜在转化动态生物标志物或药效学生物标志物值得进一步探索。

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