Naomi K Giesers, Viktoria Schaeff, Karen Gertz, Matthias Endres, Thomas G Liman
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引用次数: 0
Abstract
Vascular inflammation is involved in the pathophysiology of post-stroke cognitive impairment. We aimed to assess whether blood-based biomarkers of inflammation and endothelial dysfunction, such as interleukin 6 (IL-6), vascular cell adhesion molecule (VCAM-1), and tumor necrosis factor-alpha (TNF-α), are associated with cognitive function over time in a prospective cohort of first-ever ischemic stroke patients. Data were obtained from the Prospective Cohort with Incident Stroke Berlin (NCT01363856). Cognitive function was assessed with the Telephone Interview for Cognitive Status-modified (TICS-m) at 1 to 3 years of follow-up. Associations of baseline levels of IL-6, VCAM-1, and TNF-α with cognitive function over time were estimated using a linear mixed model adjusted for demographics, education, vascular risk factors, stroke severity, ischemic stroke subtype, and severity of white matter hyperintensity. We included 570 patients with mild-to-moderate ischemic stroke and baseline data on biomarker levels. The mean age was 67 (± 12 SD), 38.6% were female, and the median National Institutes of Health Stroke Scale (NIHSS) was 2 (IQR 1-4). Frequency of cognitive impairment defined as TICS-m score ≤ 31 was 21.9% at year one, 15.4% at year two, and 11.6% at year three. Higher log-transformed levels of IL-6 and VCAM-1 were associated with lower TICS-m scores over time in the adjusted linear mixed model including white matter hyperintensity burden (IL-6: β = -2.0, 95% CI -3.3 to -0.7, p = 0.003; VCAM-1: β = -4.1, 95% CI -7.3 to -1.0, p = 0.01). In patients with mild-to-moderate first-ever ischemic stroke, higher baseline levels of IL-6 and VCAM-1 were associated with lower Telephone Interview for Cognitive Status-modified during 3 years of follow-up.ClinicalTrials.gov Identifier: NCT01363856.
期刊介绍:
Translational Stroke Research covers basic, translational, and clinical studies. The Journal emphasizes novel approaches to help both to understand clinical phenomenon through basic science tools, and to translate basic science discoveries into the development of new strategies for the prevention, assessment, treatment, and enhancement of central nervous system repair after stroke and other forms of neurotrauma.
Translational Stroke Research focuses on translational research and is relevant to both basic scientists and physicians, including but not restricted to neuroscientists, vascular biologists, neurologists, neuroimagers, and neurosurgeons.