Proteins Involved in Endothelial Function and Inflammation Are Implicated in Cerebral Small Vessel Disease.

IF 7.8 1区 医学 Q1 CLINICAL NEUROLOGY Stroke Pub Date : 2025-01-17 DOI:10.1161/STROKEAHA.124.049079
Zihan Sun, Eric L Harshfield, Frank-Erik de Leeuw, Stephen Burgess, Adam S Butterworth, Niels P Riksen, Ziad Mallat, Hugh S Markus
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Abstract

Background: Endothelial dysfunction and inflammation have been implicated in the pathophysiology of cerebral small vessel disease (SVD). However, whether they are causal, and if so which components of the pathways represent potential treatment targets, remains uncertain.

Methods: Two-sample Mendelian randomization (MR) was used to test the association between the circulating abundance of 996 proteins involved in endothelial dysfunction and inflammation and SVD. The genetic instruments predicting protein levels were obtained from the Iceland 36K (n=35 892) and the UK Biobank Proteomics (n=34 557) cohorts, both of which were longitudinal studies with follow-up from 2000 to 2023 and 2006 to 2023, respectively. SVD was represented by lacunar stroke (n=6030 cases) and 5 neuroimaging features (white matter hyperintensities [n=55 291], diffusion tensor imaging metrics: mean diffusivity [n=36 460] and fractional anisotropy [n=36 533], extensive white matter perivascular space burden [n=9324 cases], and cerebral microbleeds [n=3556 cases]). Among the proteins supported by causal evidence from the MR, cross-sectional analysis was performed to assess their associations with cognitive performance; survival analysis with Fine-Gray models was applied to examine their associations with incident all-cause dementia and stroke within the UK Biobank Proteomics cohort.

Results: MR suggested COL2A1 (collagen type II α-1 chain) was associated with lacunar stroke (odds ratio, 0.89 [95% CI, 0.86-0.91]; P=5×10-5). Moreover, 12 proteins related to endothelial function and inflammation were associated with neuroimaging features of SVD. Cross-sectional analyses showed 5 of the 13 proteins (EPHA2 [ephrin type-A receptor 2], METAP1D [methionine aminopeptidase 1D, mitochondrial], FLT4 [vascular endothelial growth factor receptor 3], COL2A1, and TIMD4 [T-cell immunoglobulin and mucin domain-containing protein 4]) were associated with cognitive performance with effects concordant with their MR findings. Survival analyses with the Fine-Gray models indicated that 5 of the 13 proteins (EPHA2, METAP1D, FLT4, APOE [apolipoprotein E], and PDE5A [cGMP-specific 3',5'-cyclic phosphodiesterase]) were associated with the risk of all-cause dementia or stroke independent of age and sex, consistent with their MR evidence.

Conclusions: Our findings suggest that endothelial-platelet activation and complement-mediated regulation of inflammation play roles in SVD and identify potential therapeutic targets and pathways.

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参与内皮功能和炎症的蛋白与脑血管病有关。
背景:内皮功能障碍和炎症与脑血管病(SVD)的病理生理有关。然而,它们是否有因果关系,如果有因果关系,那么哪些途径的组成部分代表了潜在的治疗目标,仍然不确定。方法:采用双样本孟德尔随机化(MR)方法检测参与内皮功能障碍、炎症和SVD的996蛋白循环丰度之间的关系。预测蛋白质水平的遗传工具来自冰岛36K (n=35 892)和英国生物银行蛋白质组学(n=34 557)队列,这两个队列都是纵向研究,分别从2000年到2023年和2006年到2023年进行随访。SVD以腔隙性卒中(n=6030例)和5个神经影像学特征(白质高信号[n=55 291]、弥散张量成像指标:平均弥漫性[n=36 460]和分数各向异性[n=36 533]、白质血管周围空间负担广泛[n=9324]、脑微出血[n=3556])为代表。在MR因果证据支持的蛋白质中,进行横断面分析以评估其与认知表现的关联;在英国生物银行蛋白质组学队列中,使用Fine-Gray模型进行生存分析,以检查它们与全因痴呆和中风事件的关系。结果:MR提示COL2A1(ⅱ型胶原α-1链)与腔隙性卒中相关(优势比0.89 [95% CI, 0.86-0.91];P = 5×纯)。此外,与内皮功能和炎症相关的12种蛋白与SVD的神经影像学特征相关。横断面分析显示,13种蛋白中的5种(EPHA2 [ephrin - a型受体2],METAP1D[蛋氨酸氨基肽酶1D,线粒体],FLT4[血管内皮生长因子受体3],COL2A1和TIMD4 [t细胞免疫球蛋白和粘蛋白结构域蛋白4])与认知表现相关,其作用与MR结果一致。使用Fine-Gray模型进行的生存分析表明,13种蛋白中的5种(EPHA2、METAP1D、FLT4、APOE[载脂蛋白E]和PDE5A [cgmp特异性3',5'-环磷酸二酯酶])与全因痴呆或卒中的风险相关,与年龄和性别无关,与MR证据一致。结论:我们的研究结果表明,内皮血小板活化和补体介导的炎症调节在SVD中发挥作用,并确定了潜在的治疗靶点和途径。
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来源期刊
Stroke
Stroke 医学-临床神经学
CiteScore
13.40
自引率
6.00%
发文量
2021
审稿时长
3 months
期刊介绍: Stroke is a monthly publication that collates reports of clinical and basic investigation of any aspect of the cerebral circulation and its diseases. The publication covers a wide range of disciplines including anesthesiology, critical care medicine, epidemiology, internal medicine, neurology, neuro-ophthalmology, neuropathology, neuropsychology, neurosurgery, nuclear medicine, nursing, radiology, rehabilitation, speech pathology, vascular physiology, and vascular surgery. The audience of Stroke includes neurologists, basic scientists, cardiologists, vascular surgeons, internists, interventionalists, neurosurgeons, nurses, and physiatrists. Stroke is indexed in Biological Abstracts, BIOSIS, CAB Abstracts, Chemical Abstracts, CINAHL, Current Contents, Embase, MEDLINE, and Science Citation Index Expanded.
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