Tissue Factor and Its Cerebrospinal Fluid Protein Profiles in Parkinson's Disease

帕金森病中的组织因子及其脑脊液蛋白质谱

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作者:Milan Zimmermann, Madeleine Fandrich, Meike Jakobi, Benjamin Röben, Isabel Wurster, Stefanie Lerche, Claudia Schulte, Shahrzad Zimmermann, Christian Deuschle, Nicole Schneiderhan-Marra, Thomas O Joos, Thomas Gasser, Kathrin Brockmann

Background

Prior investigations have elucidated pathophysiological interactions involving blood coagulation and neurodegenerative diseases. These interactions pertain to age-related effects and a mild platelet antiaggregant function of exogenous α-Synuclein.

Conclusions

TF as representative of blood hemostasis could be an interesting CSF candidate to further explore in PD and DLB.

Methods

We examined CSF levels of TF in 479 PD patients, 67 patients diagnosed with DLB, and 16 CON in order to evaluate potential continuum patterns among DLB, PD, and CON. Of the 479 PD patients, 96 carried a GBA1 variant (PD GBA1), while the 383 non-carriers were classified as PD wildtype (PD WT). We considered both longitudinal clinical data as well as CSF measurements of common neurodegenerative markers (amyloid-β 1-42, h-Tau, p-Tau, NfL, α-Synuclein). Kaplan-Meier survival and Cox regression analysis stratified by TF tertile levels was conducted.

Objective

Our study sought to explore whether cerebrospinal fluid (CSF) levels of tissue factor (TF), the initiator of the extrinsic pathway of hemostasis, differ between controls (CON) compared to patients with Parkinson's disease (PD) and dementia with Lewy bodies (DLB), considering that these conditions represent a spectrum of α-Synuclein pathology. We further investigated whether TF levels are associated with longitudinal progression in PD.

Results

Higher CSF levels of TF were associated with an older age at examination in PD and a significant later onset of postural instability in PD GBA1. TF levels were lower in male vs. female PD. DLB GBA1 exhibited the lowest TF levels, followed by PD GBA1, with CON showing the highest levels. Conclusions: TF as representative of blood hemostasis could be an interesting CSF candidate to further explore in PD and DLB.

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