Department of Medicine, University of Pennsylvania, Philadelphia, PA, 19104, USA.
Department of Bioengineering, University of Pennsylvania, Philadelphia, PA, 19104, USA.
Small. 2021 Apr;17(15):e2004889. doi: 10.1002/smll.202004889. Epub 2020 Nov 4.
Hemostasis is an innate protective mechanism that plays a central role in maintaining the homeostasis of the vascular system during vascular injury. Studying this essential physiological process is often challenged by the difficulty of modeling and probing the complex dynamics of hemostatic responses in the native context of human blood vessels. To address this major challenge, this paper describes a microengineering approach for in vitro modeling of hemostasis. This microphysiological model replicates the living endothelium, multilayered microarchitecture, and procoagulant activity of human blood vessels, and is also equipped with a microneedle that is actuated with spatial precision to simulate penetrating vascular injuries. The system recapitulates key features of the hemostatic response to acute vascular injury as observed in vivo, including i) thrombin-driven accumulation of platelets and fibrin, ii) formation of a platelet- and fibrin-rich hemostatic plug that halts blood loss, and iii) matrix deformation driven by platelet contraction for wound closure. Moreover, the potential use of this model for drug testing applications is demonstrated by evaluating the effects of anticoagulants and antiplatelet agents that are in current clinical use. The vascular injury-on-a-chip may serve as an enabling platform for preclinical investigation of hematological disorders and emerging therapeutic approaches against them.
止血是一种先天的保护机制,在血管损伤时对维持血管系统的内稳态起着核心作用。研究这一基本生理过程通常面临着建模和探测止血反应在人血管天然环境中复杂动力学的困难。为了解决这一重大挑战,本文介绍了一种用于体外止血建模的微工程方法。该微生理模型复制了活内皮细胞、多层微结构和人血管的促凝血活性,并且还配备了一个微针,该微针可以精确地进行空间驱动,以模拟穿透性血管损伤。该系统再现了体内观察到的急性血管损伤止血反应的关键特征,包括 i)凝血酶驱动血小板和纤维蛋白的积累,ii)形成阻止失血的血小板和纤维蛋白丰富的止血塞,以及 iii)血小板收缩驱动的基质变形以闭合伤口。此外,通过评估当前临床使用的抗凝剂和抗血小板药物的效果,展示了该模型在药物测试应用中的潜在用途。该血管损伤芯片可能成为血液疾病的临床前研究和针对这些疾病的新兴治疗方法的一个使能平台。