Joint Department of Biomedical Engineering, University of North Carolina at Chapel Hill and North Carolina State University, Chapel Hill and Raleigh, NC, 27599, 27695, USA.
Department of Genetics, University of North Carolina at Chapel Hill School of Medicine, Chapel Hill, NC, 27599, USA.
Small. 2024 Jun;20(24):e2307901. doi: 10.1002/smll.202307901. Epub 2024 Jan 7.
Cardiovascular disease is the cause of death in ≈50% of hemodialysis patients. Accumulation of uremic solutes in systemic circulation is thought to be a key driver of the endothelial dysfunction that underlies elevated cardiovascular events. A challenge in understanding the mechanisms relating chronic kidney disease to cardiovascular disease is the lack of in vitro models that allow screening of the effects of the uremic environment on the endothelium. Here, a method is described for microfabrication of human blood vessels from donor cells and perfused with donor serum. The resulting donor-derived microvessels are used to quantify vascular permeability, a hallmark of endothelial dysfunction, in response to serum spiked with pathophysiological levels of indoxyl sulfate, and in response to serum from patients with chronic kidney disease and from uremic pigs. The uremic environment has pronounced effects on microvascular integrity as demonstrated by irregular cell-cell junctions and increased permeability in comparison to cell culture media and healthy serum. Moreover, the engineered microvessels demonstrate an increase in sensitivity compared to traditional 2D assays. Thus, the devices and the methods presented here have the potential to be utilized to risk stratify and to direct personalized treatments for patients with chronic kidney disease.
心血管疾病是 ≈50%血液透析患者的死亡原因。人们认为,尿毒症溶质在全身循环中的积累是导致内皮功能障碍的关键因素,而内皮功能障碍是心血管事件升高的基础。理解慢性肾病与心血管疾病之间的机制的一个挑战是缺乏体外模型,这些模型可以筛选尿毒症环境对内皮的影响。在这里,描述了一种从供体细胞微制造人血管并用人血清灌注的方法。所得到的供体衍生的微血管用于定量血管通透性,这是内皮功能障碍的一个标志,以响应血清中掺入生理相关水平的吲哚硫酸酯以及响应慢性肾病患者和尿毒症猪的血清。与细胞培养介质和健康血清相比,尿毒症环境对微血管完整性有明显影响,表现为细胞-细胞连接不规则和通透性增加。此外,与传统的 2D 测定相比,工程化的微血管显示出更高的灵敏度。因此,这里提出的设备和方法有可能用于对慢性肾病患者进行风险分层,并指导个性化治疗。