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一种用于研究动脉内支架治疗的离体生理和增生性血管培养模型。

An ex vivo physiologic and hyperplastic vessel culture model to study intra-arterial stent therapies.

机构信息

Department of Anesthesiology, School of Medicine, Yale University, New Haven, CT, 06519, USA.

Department of Biomedical Engineering, School of Medicine, Yale University, New Haven, CT, 06519, USA.

出版信息

Biomaterials. 2021 Aug;275:120911. doi: 10.1016/j.biomaterials.2021.120911. Epub 2021 May 29.

Abstract

Conventional in vitro methods for biological evaluation of intra-arterial devices such as stents fail to accurately predict cytotoxicity and remodeling events. An ex vivo flow-tunable vascular bioreactor system (VesselBRx), comprising intra- and extra-luminal monitoring capabilities, addresses these limitations. VesselBRx mimics the in vivo physiological, hyperplastic, and cytocompatibility events of absorbable magnesium (Mg)-based stents in ex vivo stent-treated porcine and human coronary arteries, with in-situ and real-time monitoring of local stent degradation effects. Unlike conventional, static cell culture, the VesselBRx perfusion system eliminates unphysiologically high intracellular Mg concentrations and localized O consumption resulting from stent degradation. Whereas static stented arteries exhibited only 20.1% cell viability and upregulated apoptosis, necrosis, metallic ion, and hypoxia-related gene signatures, stented arteries in VesselBRx showed almost identical cell viability to in vivo rabbit models (~94.0%). Hyperplastic intimal remodeling developed in unstented arteries subjected to low shear stress, but was inhibited by Mg-based stents in VesselBRx, similarly to in vivo. VesselBRx represents a critical advance from the current static culture standard of testing absorbable vascular implants.

摘要

传统的用于评价动脉内器械(如支架)的体外生物学方法无法准确预测细胞毒性和重塑事件。一种离体可调流血管生物反应器系统(VesselBRx),具有管腔内外监测能力,解决了这些局限性。VesselBRx 模拟了可吸收镁(Mg)基支架在离体支架处理的猪和人冠状动脉中的体内生理、增生和细胞相容性事件,可原位和实时监测局部支架降解效应。与传统的静态细胞培养不同,VesselBRx 灌注系统消除了支架降解导致的细胞内 Mg 浓度异常升高和局部 O 消耗。虽然静态支架动脉的细胞活力仅为 20.1%,且细胞凋亡、坏死、金属离子和缺氧相关基因特征上调,但 VesselBRx 中的支架动脉的细胞活力与体内兔模型几乎相同(~94.0%)。低切应力下未支架动脉出现增生性内膜重塑,但 VesselBRx 中的 Mg 基支架抑制了这种重塑,与体内情况相似。VesselBRx 是对目前静态培养测试可吸收血管植入物标准的重要改进。

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