Plasma neurofilament light predicts mortality in patients with stroke

冲程(发动机) 医学 内科学 心脏病学 物理 热力学
作者
Tania F. Gendron,Mohammed K. Badi,Michael G. Heckman,Karen Jansen‐West,George K. Vilanilam,Patrick W. Johnson,Alexander R. Burch,Ronald L. Walton,Owen A. Ross,Thomas G. Brott,Timothy M. Miller,James Berry,Katharine Nicholson,Zbigniew K. Wszołek,Björn Oskarsson,Kevin N. Sheth,Lauren Sansing,Guido J. Falcone,Brett Cucchiara,James F. Meschia,Leonard Petrucelli
出处
期刊:Science Translational Medicine [American Association for the Advancement of Science]
卷期号:12 (569) 被引量:62
标识
DOI:10.1126/scitranslmed.aay1913
摘要

Given the heterogeneity of stroke brain injury, there is a clear need for a biomarker that determines the degree of neuroaxonal injury across stroke types. We evaluated whether blood neurofilament light (NFL) would fulfill this purpose for patients with acute cerebral infarction (ACI; N = 227), aneurysmal subarachnoid hemorrhage (aSAH; N = 58), or nontraumatic intracerebral hemorrhage (ICH; N = 29). We additionally validated our findings in two independent cohorts of patients with ICH (N = 96 and N = 54) given the scarcity of blood biomarker studies for this deadliest stroke type. Compared to healthy individuals (N = 79 and N = 48 for the discovery and validation cohorts, respectively), NFL was higher for all stroke types. NFL associated with radiographic markers of brain tissue damage. It correlated with the extent of early ischemic injury in patients with ACI, hemorrhage severity in patients with aSAH, and intracranial hemorrhage volume in patients with ICH. In all patients, NFL independently correlated with scores from the NIH Stroke Scale, the modified Rankin Scale, and the Mini-Mental State Examination at blood draw, which respectively assess neurological, functional, and cognitive status. Furthermore, higher NFL concentrations independently associated with 3- or 6-month functional disability and higher all-cause mortality. These data support NFL as a uniform method to estimate neuroaxonal injury and forecast mortality regardless of stroke mechanism. As a prognostic biomarker, blood NFL has the potential to assist with planning supportive and rehabilitation services and improving clinical trial efficiency for stroke therapeutics and devices.

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