Thimet oligopeptidase as a potential CSF biomarker for Alzheimer's disease: A cross-platform validation study

Thimet 寡肽酶作为阿尔茨海默病的潜在 CSF 生物标志物:一项跨平台验证研究

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作者:Yanaika S Hok-A-Hin, Katharina Bolsewig, Daimy N Ruiters, Alberto Lleó, Daniel Alcolea, Afina W Lemstra, Wiesje M van der Flier, Charlotte E Teunissen, Marta Del Campo

Discussion

Validation of our proteomics findings underpins the potential of CSF THOP1 as an early specific biomarker associated with AD pathology. The use of antibody-based platforms in both the discovery and validation phases facilitated the translation of proteomics findings, providing an additional workflow that may accelerate the development of biofluid-based biomarkers.

Methods

We developed in-house CSF THOP1 immunoassays on automated Ella and Simoa platforms. The performance of the different assays were compared using Passing-Bablok regression analysis in a subset of CSF samples from the discovery cohort (n = 72). Clinical validation was performed in two independent cohorts (cohort 1: n = 200; cohort 2: n = 165) using the Ella platform.

Results

THOP1 concentrations moderately correlated between proteomics analysis and our novel assays (Rho > 0.580). In both validation cohorts, CSF THOP1 was increased in MCI-Aβ+ (>1.3-fold) and AD (>1.2-fold) compared with controls; and between MCI-Aβ+ and DLB (>1.2-fold). Higher THOP1 concentrations were detected in AD compared with DLB only when both cohorts were analyzed together. In both cohorts, THOP1 correlated with CSF total tau (t-tau), phosphorylated tau (p-tau), and Aβ40 (Rho > 0.540) but not Aβ42.

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