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Design and Fabrication of a Three-Dimensional In Vitro System for Modeling Vascular Stenosis

机译:三维体外系统的设计与制造用于造型血管狭窄的血管狭窄

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摘要

Vascular stenosis, the abnormal narrowing of blood vessels, arises from defective developmental processes or atherosclerosis-related adult pathologies. Stenosis triggers a series of adaptive cellular responses that induces adverse remodeling, which can progress to partial or complete vessel occlusion with numerous fatal outcomes. Despite its severity, the cellular interactions and biophysical cues that regulate this pathological progression are poorly understood. Here, we report the design and fabrication of a three-dimensional (3D) in vitro system to model vascular stenosis so that specific cellular interactions and responses to hemodynamic stimuli can be investigated. Tubular cellularized constructs (cytotubes) were produced, using a collagen casting system, to generate a stenotic arterial model. Fabrication methods were developed to create cytotubes containing co-cultured vascular cells, where cell viability, distribution, morphology, and contraction were examined. Fibroblasts, bone marrow primary cells, smooth muscle cells (SMCs), and endothelial cells (ECs) remained viable during culture and developed location- and time-dependent morphologies. We found cytotube contraction to depend on cellular composition, where SMC-EC co-cultures adopted intermediate contractile phenotypes between SMC- and EC-only cytotubes. Our fabrication approach and the resulting artery model can serve as an in vitro 3D culture system to investigate vascular pathogenesis and promote the tissue engineering field.
机译:血管狭窄,血管异常缩小,产生缺陷的发育过程或动脉粥样硬化相关的成年病理学。狭窄触发了一系列适应性细胞反应,可诱导不良重塑,这可以与许多致命结果的部分或完整的血管闭塞进行。尽管其严重程度,但调节这种病理进展的细胞相互作用和生物物理提示很差。在这里,我们将三维(3D)体外系统的设计和制作进行了模拟血管狭窄,以便可以研究特异性细胞相互作用和对血流动力刺激的反应。使用胶原铸造系统产生管状细胞化构建体(细胞管),产生狭窄动脉模型。开发了制造方法以产生含有共培养的血管细胞的细胞管,其中检查细胞活力,分布,形态和收缩。成纤维细胞,骨髓原代细胞,平滑肌细胞(SMC)和内皮细胞(ECS)在培养过程中保持可行,并且发育出现的位置和时间依赖性形态。我们发现细胞水管收缩以取决于细胞组合物,其中SMC-EC共同培养物采用中间收缩表型在SMC和EC的细胞管之间采用中间收缩表型。我们的制备方法和所得动脉模型可以作为体外3D培养系统,以研究血管发病机制和促进组织工程领域。

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