经他汀类药物处理的红细胞在微流体多孔网络中的动态变化。

IF 2.9 4区 医学 Q2 PERIPHERAL VASCULAR DISEASE
Antonios Stathoulopoulos , Carola S. König , Sudarshan Ramachandran , Stavroula Balabani
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引用次数: 0

摘要

本研究以他汀类药物为例,研究了治疗干预对红细胞(RBC)变形性和微观运输的影响。用两种常用的他汀类药物(阿托伐他汀和罗苏伐他汀)以临床相关浓度对人类红细胞进行体外处理。使用基于微流体的埃克泰克计对红细胞变形性的变化进行量化,并用伸长指数表示。然后将他汀类药物处理过的RBC稀释悬浮液以恒定流速和可忽略的惯性灌注到微流体柱阵列中,并进行成像。粒子跟踪测速仪(PTV)用于跟踪 RBC、识别优先路径并估算其速度,而图像处理则用于估算细胞动态、灌注指标和分布。研究结果与未经处理的健康细胞进行了比较。他汀类药物增强了红细胞的变形能力,这与文献报道一致。增强的程度取决于他汀类药物。与健康的红细胞相比,他汀类药物处理过的软细胞的流动路径更直、更少迂回,在柱阵列内停留的时间更长,速度更低,这归因于它们在撞击柱阵列时变形增强,形状恢复时间更长。这里展示的体外微流体方法可作为一种监测工具,用于个性化和最大限度地提高治疗效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Statin-treated RBC dynamics in a microfluidic porous-like network
The impact of therapeutic interventions on red blood cell (RBC) deformability and microscale transport is investigated, using statins as an exemplar. Human RBCs were treated in vitro with two commonly prescribed statins, atorvastatin and rosuvastatin, at clinically relevant concentrations. Changes in RBC deformability were quantified using a microfluidic-based ektacytometer and expressed in terms of the elongation index. Dilute suspensions of the statin-treated RBCs were then perfused through a microfluidic pillar array, at a constant flow rate and negligible inertia, and imaged. Particle Tracking Velocimetry (PTV) was applied to track RBCs, identify preferential paths and estimate their velocities, whereas image processing was used to estimate cell dynamics, perfusion metrics and distributions. The findings were compared against those of healthy, untreated cells. Statins enhanced RBC deformability in agreement with literature. The extent of enhancement was found to be statin-dependent. The softer statin-treated cells were found to flow in straight, less tortuous paths, spend more time inside the pillar array and exhibit lower velocities compared to healthy RBCs, attributed to their enhanced deformation and longer shape recovery time upon impact with the array posts. The in vitro microfluidic approach demonstrated here may serve as a monitoring tool to personalise and maximise the outcome of a therapeutic treatment.
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来源期刊
Microvascular research
Microvascular research 医学-外周血管病
CiteScore
6.00
自引率
3.20%
发文量
158
审稿时长
43 days
期刊介绍: Microvascular Research is dedicated to the dissemination of fundamental information related to the microvascular field. Full-length articles presenting the results of original research and brief communications are featured. Research Areas include: • Angiogenesis • Biochemistry • Bioengineering • Biomathematics • Biophysics • Cancer • Circulatory homeostasis • Comparative physiology • Drug delivery • Neuropharmacology • Microvascular pathology • Rheology • Tissue Engineering.
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