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氟脱氧葡萄糖(FDG)低代谢对脑脊液生物标志物与神经认知功能之间关联的中介作用。

The mediational effects of FDG hypometabolism on the association between cerebrospinal fluid biomarkers and neurocognitive function.

作者信息

Dowling N Maritza, Johnson Sterling C, Gleason Carey E, Jagust William J

机构信息

Department of Biostatistics and Medical Informatics, University of Wisconsin, Madison, WI, USA; Alzheimer's Disease Research Center, University of Wisconsin, Madison, WI, USA.

Alzheimer's Disease Research Center, University of Wisconsin, Madison, WI, USA; Geriatric Research Education and Clinical Center, William S. Middleton Memorial Veterans Hospital, Madison, WI, USA.

出版信息

Neuroimage. 2015 Jan 15;105:357-68. doi: 10.1016/j.neuroimage.2014.10.050. Epub 2014 Oct 29.

Abstract

Positive cerebrospinal fluid (CSF) biomarkers of tau and amyloid beta42 suggest possible active underlying Alzheimer's disease (AD) including neurometabolic dysfunction and neurodegeneration leading to eventual cognitive decline. But the temporal relationship between CSF, imaging markers of neural function, and cognition has not been described. Using a statistical mediation model, we examined relationships between cerebrospinal fluid (CSF) analytes (hyperphosphorylated tau (p-Tau(181p)), β-amyloid peptides 1-42 (Aβ(1-42)), total tau (t-Tau), and their ratios); change in cognitive function; and change in [18F]fluorodeoxyglucose (FDG) uptake using positron emission tomography (PET). We hypothesized that a) abnormal CSF protein values at baseline, result in cognitive declines by decreasing neuronal glucose metabolism across time, and b) the role of altered glucose metabolism in the assumed causal chain varies by brain region and the nature of CSF protein alteration. Data from 412 individuals participating in Alzheimer's Disease Neuroimaging (ADNI) cohort studies were included in analyses. At baseline, individuals were cognitively normal (N = 82), or impaired: 241 with mild cognitive impairment, and 89 with Alzheimer's disease. A parallel-process latent growth curve model was used to test mediational effects of changes in regional FDG-PET uptake over time in relation to baseline CSF biomarkers and changes in cognition, measured with the 13-item Alzheimer Disease's Assessment Scale-cognitive subscale (ADAS-Cog). Findings suggested a causal sequence of events; specifically, FDG hypometabolism acted as a mediator between antecedent CSF biomarker alterations and subsequent cognitive impairment. Higher baseline concentrations of t-Tau, and p-Tau(181p) were more predictive of decline in cerebral glucose metabolism than lower baseline concentrations of Aβ(1-42). FDG-PET changes appeared to mediate t-Tau or t-Tau/Aβ(1-42)-associated cognitive change across all brain regions examined. Significant direct effects of alterations in Aβ(1-42) levels on hypometabolism were observed in a single brain region: middle/inferior temporal gyrus. Results support a temporal framework model in which reduced CSF amyloid-related biomarkers occur earlier in the pathogenic pathway, ultimately leading to detrimental cognitive effects. Also consistent with this temporal framework model, baseline markers of neurofibrillary degeneration predicted changes in brain glucose metabolism in turn causing longitudinal cognitive changes, suggesting that tau-related burden precedes neurometabolic dysfunction. While intriguing, the hypothesized mediational relationships require further validation.

摘要

脑脊液(CSF)中tau蛋白和淀粉样蛋白β42的阳性生物标志物提示可能存在潜在的活动性阿尔茨海默病(AD),包括神经代谢功能障碍和神经退行性变,最终导致认知能力下降。但脑脊液、神经功能成像标志物与认知之间的时间关系尚未得到描述。我们使用统计中介模型,研究了脑脊液(CSF)分析物(磷酸化tau蛋白(p-Tau(181p))、β-淀粉样肽1-42(Aβ(1-42))、总tau蛋白(t-Tau)及其比值)之间的关系;认知功能的变化;以及使用正电子发射断层扫描(PET)测量的[18F]氟脱氧葡萄糖(FDG)摄取的变化。我们假设:a)基线时脑脊液蛋白值异常,通过随时间降低神经元葡萄糖代谢导致认知能力下降;b)葡萄糖代谢改变在假定的因果链中的作用因脑区和脑脊液蛋白改变的性质而异。来自412名参与阿尔茨海默病神经影像学(ADNI)队列研究的个体的数据纳入分析。基线时,个体认知正常(N = 82),或受损:241名轻度认知障碍患者,89名阿尔茨海默病患者。使用平行过程潜在生长曲线模型来测试区域FDG-PET摄取随时间的变化对基线脑脊液生物标志物和认知变化的中介作用,认知变化用13项阿尔茨海默病评估量表认知子量表(ADAS-Cog)测量。研究结果提示了一系列因果事件;具体而言,FDG代谢减低在先前的脑脊液生物标志物改变和随后的认知障碍之间起中介作用。与较低的基线Aβ(1-42)浓度相比,较高的基线t-Tau和p-Tau(181p)浓度更能预测脑葡萄糖代谢的下降。在所有检查的脑区中,FDG-PET变化似乎介导了t-Tau或t-Tau/Aβ(1-42)相关的认知变化。在单个脑区:颞中/下回,观察到Aβ(1-42)水平改变对代谢减低有显著直接影响。结果支持一个时间框架模型,其中脑脊液淀粉样蛋白相关生物标志物的减少在致病途径中更早出现,最终导致有害的认知影响。同样与这个时间框架模型一致的是,神经原纤维变性的基线标志物预测脑葡萄糖代谢的变化,进而导致纵向认知变化,提示tau相关负担先于神经代谢功能障碍。虽然很有趣,但假设的中介关系需要进一步验证。

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