Suppr超能文献

健康老年人中循环血小板对脑血管功能控制的证据。

Evidence for control of cerebral neurovascular function by circulating platelets in healthy older adults.

作者信息

Rossetti Gabriella M K, Dunster Joanne L, Sohail Aamir, Williams Brendan, Cox Kiera M, Rawlings Suzannah, Jewett Elysia, Benford Eleanor, Lovegrove Julie A, Gibbins Jonathan M, Christakou Anastasia

机构信息

Centre for Integrative Neuroscience and Neurodynamics (CINN), School of Psychology and Clinical Language Sciences, University of Reading, Reading, UK.

Institute of Sport, Department of Sport and Exercise Sciences, Manchester Metropolitan University, Manchester, UK.

出版信息

J Physiol. 2025 Jun;603(11):3379-3404. doi: 10.1113/JP288405. Epub 2025 May 28.

Abstract

Platelets play a vital role in preventing haemorrhage through haemostasis, but complications arise when platelets become overly reactive, leading to pathophysiology such as atherothrombosis. Elevated haemostatic markers are linked to dementia and predict its onset in long-term studies. Despite epidemiological evidence, the mechanism linking haemostasis with early brain pathophysiology remains unclear. Here, we aimed to determine whether a mechanistic association exists between platelet function and cerebral neurovascular function in 52 healthy mid- to older-age adults. To do this, we combined, for the first time, magnetic resonance imaging of cerebral neurovascular function, peripheral vascular physiology and in vitro platelet assaying. We show an association between platelet reactivity and cerebral neurovascular function that is both independent of vascular reactivity and mechanistically specific: Distinct platelet signalling mechanisms (ADP, collagen-related peptide, thrombin receptor activator peptide 6) were associated with different physiological components of the haemodynamic response to neuronal (visual) stimulation (full-width half-maximum, time to peak, area under the curve), an association that was not mediated by peripheral vascular effects. This finding challenges the previous belief that systemic vascular health determines the vascular component of cerebral neurovascular function, highlighting a specific link between circulating platelets and the neurovascular unit. Because altered cerebral neurovascular function marks the initial stages of neurodegenerative pathophysiology, understanding this novel association is now imperative, with the potential to lead to a significant advancement in our comprehension of early dementia pathophysiology. KEY POINTS: Haemostasis (platelet function) has been linked to the early stages of dementia, but the precise mechanisms are not well understood. This study considers whether a causal mechanism exists through atherothrombotic effects on the vasculature which can in turn affect brain health, or through platelet-specific interactions with brain physiology. Here, we show that elevated platelet reactivity is associated with blunted (delayed, shorter and smaller) cerebral blood flow responses to neuronal activation in healthy middle-aged and older adults. However, the association between platelet reactivity and cerebral neurovascular function was not mediated by systemic vascular reactivity. This finding challenges the previous belief that systemic vascular health determines the vascular component of cerebral neurovascular function, highlighting a specific link between circulating platelets and the neurovascular unit in early dementia pathophysiology.

摘要

血小板在通过止血来预防出血方面发挥着至关重要的作用,但当血小板反应过度时就会引发并发症,进而导致动脉粥样硬化血栓形成等病理生理状况。在长期研究中,止血标志物升高与痴呆症相关,并可预测其发病。尽管有流行病学证据,但止血与早期脑病理生理学之间的联系机制仍不清楚。在此,我们旨在确定52名健康的中老年成年人的血小板功能与脑-神经血管功能之间是否存在机制上的关联。为此,我们首次将脑-神经血管功能的磁共振成像、外周血管生理学和体外血小板检测相结合。我们发现血小板反应性与脑-神经血管功能之间存在一种关联,这种关联既独立于血管反应性,又具有机制特异性:不同的血小板信号传导机制(二磷酸腺苷、胶原相关肽、凝血酶受体激活肽6)与对神经元(视觉)刺激的血流动力学反应的不同生理成分(半高宽、峰值时间、曲线下面积)相关,这种关联并非由外周血管效应介导。这一发现挑战了先前认为全身血管健康决定脑-神经血管功能的血管成分的观点,突出了循环血小板与神经血管单元之间的特定联系。由于脑-神经血管功能改变是神经退行性病理生理学初始阶段的标志,现在迫切需要了解这种新的关联,这有可能在我们对早期痴呆症病理生理学的理解上取得重大进展。要点:止血(血小板功能)与痴呆症的早期阶段有关,但确切机制尚不清楚。本研究探讨是否存在一种因果机制,是通过对脉管系统的动脉粥样硬化血栓形成作用进而影响脑健康,还是通过血小板与脑生理学的特异性相互作用。在此,我们表明血小板反应性升高与健康中年和老年人对神经元激活的脑血流反应减弱(延迟、缩短和减小)有关。然而,血小板反应性与脑-神经血管功能之间的关联并非由全身血管反应性介导。这一发现挑战了先前认为全身血管健康决定脑-神经血管功能的血管成分的观点,突出了循环血小板与早期痴呆症病理生理学中的神经血管单元之间的特定联系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f24/12148208/a5cac716e246/TJP-603-3379-g011.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验