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神经丝轻链蛋白在小脑共济失调 3 型小鼠模型中的血液水平与疾病进展相关。

Blood levels of neurofilament light are associated with disease progression in a mouse model of spinocerebellar ataxia type 3.

机构信息

Research Division Translational Genomics of Neurodegenerative Diseases, Hertie-Institute for Clinical Brain Research and Center of Neurology, University of Tübingen, Tübingen 72076,Germany.

German Center for Neurodegenerative Diseases (DZNE), University of Tübingen, Tübingen 72076, Germany.

出版信息

Dis Model Mech. 2023 Sep 1;16(9). doi: 10.1242/dmm.050144. Epub 2023 Sep 4.

Abstract

Increased neurofilament light (NfL; NEFL) protein in biofluids is reflective of neurodegeneration and has gained interest as a biomarker across neurodegenerative diseases. In spinocerebellar ataxia type 3 (SCA3), the most common dominantly inherited ataxia, patients exhibit progressive NfL increases in peripheral blood when becoming symptomatic, and NfL remains stably elevated throughout further disease course. However, progressive NfL changes are not yet validated in relevant preclinical SCA3 animal models, hindering its application as a biomarker during therapeutic development. We used ultra-sensitive single-molecule array (Simoa) to measure blood NfL over disease progression in YACQ84 mice, a model of SCA3, assessing relationships with measures of disease severity including age, CAG repeat size and magnetic resonance spectroscopy. YACQ84 mice exhibited plasma NfL increases that were concomitant with ataxia-related motor deficits as well as increased serum NfL, which correlated with previously established neurometabolite abnormalities, two relevant measures of disease in patients with SCA3. Our findings establish the progression of NfL increases in the preclinical YACQ84 mouse, further supporting the utility of blood NfL as a peripheral neurodegeneration biomarker and informing on coinciding timelines of different measures of SCA3 pathogenesis.

摘要

生物流体中神经丝轻链(NfL;NEFL)蛋白的增加反映了神经退行性变,并作为神经退行性疾病的生物标志物引起了关注。在 SCA3(最常见的显性遗传性共济失调)中,当患者出现症状时,外周血中会出现进行性 NfL 增加,并且在进一步的疾病过程中 NfL 仍然稳定升高。然而,在相关的 SCA3 动物模型中,尚未验证进行性 NfL 变化,这阻碍了其在治疗开发过程中作为生物标志物的应用。我们使用超灵敏的单分子阵列(Simoa)来测量 YACQ84 小鼠(SCA3 的模型)疾病进展过程中的血液 NfL,评估其与疾病严重程度的测量值之间的关系,包括年龄、CAG 重复大小和磁共振波谱。YACQ84 小鼠表现出与运动缺陷相关的血浆 NfL 增加,以及血清 NfL 增加,这与先前建立的神经代谢物异常相关,这是 SCA3 患者的两种相关疾病测量值。我们的发现确立了临床前 YACQ84 小鼠中 NfL 增加的进展,进一步支持了血液 NfL 作为外周神经退行性变生物标志物的实用性,并提供了关于 SCA3 发病机制的不同测量值的并发时间表的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/16eb/10499033/b5f83926c978/dmm-16-050144-g1.jpg

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