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使用高灵敏度膜电容传感器对血小板功能进行综合多参数评估。

Comprehensive multiparameter evaluation of platelet function using a highly sensitive membrane capacitance sensor.

作者信息

K Sekar Praveen, M Liang Xin, Jin Ye, Zhou Xiaoming, Hu Min, Wu Yanyun, Gao Dayong

机构信息

Department of Mechanical Engineering, University of Washington, Seattle, WA, 98195, USA.

Wellman Center for Photomedicine, Division of Hematology and Oncology, Division of Endocrinology, Massachusetts General Hospital, VA Boston Healthcare System, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, MA, 02115, USA.

出版信息

Biosens Bioelectron. 2023 May 15;228:115192. doi: 10.1016/j.bios.2023.115192. Epub 2023 Mar 5.

Abstract

An accurate and comprehensive assessment of platelet function is essential for managing patients who receive antiplatelet therapies or require platelet transfusion either for treating active bleeding or for prophylaxis. Platelets contribute to clotting by undergoing a series of highly regulated functional responses including adhesion, spreading, granular secretion, aggregation, and cytoskeletal contraction. However, current platelet function assays evaluate only partial aspects of this intricate process and often under non-physiological testing conditions. Herein, we describe the development of a new approach to measure multiple key platelet function-related parameters, in a more physiologically relevant ex vivo semi-rigid microenvironment using a membrane capacitance sensor (MCS). MCS response to clotting provided three sensing parameters with sensitivities towards platelet counts, stimulation strengths, and activation pathways. Live confocal fluorescent imaging of stimulated platelets on MCS suggests that the presented system can readily and accurately convert the dynamics of cytoskeletal reorganization into analyzable electrical signals. Together, this new completely electrical sensing platform can be a promising diagnostic venue to recognize the impairment of primary hemostatic functions, evaluate the efficacy of therapeutic interventions, and gain further insights into the mechanisms of platelets in hemostasis and thrombosis.

摘要

对于接受抗血小板治疗或因治疗活动性出血或预防目的而需要进行血小板输注的患者,准确而全面地评估血小板功能至关重要。血小板通过经历一系列高度调控的功能反应(包括黏附、铺展、颗粒分泌、聚集和细胞骨架收缩)来促进凝血。然而,目前的血小板功能检测仅评估了这一复杂过程的部分方面,并且通常是在非生理测试条件下进行的。在此,我们描述了一种新方法的开发,该方法使用膜电容传感器(MCS)在更具生理相关性的离体半刚性微环境中测量多个与血小板功能相关的关键参数。MCS对凝血的反应提供了三个传感参数,对血小板计数、刺激强度和激活途径具有敏感性。在MCS上对受刺激血小板进行实时共聚焦荧光成像表明,所提出的系统能够轻松且准确地将细胞骨架重组的动态转化为可分析的电信号。总之,这个全新的全电传感平台有望成为一个有前景的诊断工具,用于识别原发性止血功能的损害、评估治疗干预的疗效,并进一步深入了解血小板在止血和血栓形成中的机制。

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