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A Novel Cylindrical Biaxial Computer-Controlled Bioreactor and Biomechanical Testing Device for Vascular Tissue Engineering

机译:用于血管组织工程的新型圆柱形双轴计算机控制生物反应器和生物力学测试装置

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摘要

It is becoming evident that tissue-engineered constructs adapt to altered mechanical loading, and that specific combinations of multidirectional loads appear to have a synergistic effect on the remodeling. However, most studies of mechanical stimulation of engineered vascular tissue engineering employ only uniaxial stimulation. Here we present a novel computer-controlled bioreactor and biomechanical testing device designed to precisely and simultaneously control mean and cyclic values of transmural pressure (at rates up to 1 Hz and ranges of 40 mmHg), luminal flow rate, and axial length (or load) applied to gel-derived, scaffold-derived, and self-assembly-derived tissue-engineered blood vessels during culture, while monitoring vessel geometry with a resolution of 6.6 μm. Intermittent monitoring of the extracellular matrix and cells is accomplished on live tissues using multi-photon confocal microscopy under unloaded and loaded conditions at multiple time-points in culture (on the same vessel) to quantify changes in cell and extracellular matrix content and organization. This same device is capable of performing intermittent cylindrical biaxial biomechanical testing at multiple time-points in culture (on the same vessel) to quantify changes in the mechanical behavior during culture. Here we demonstrate the capabilities of this new device on self-assembly-derived and collagen-gel-derived tissue-engineered blood vessels.
机译:越来越明显的是,组织工程构造可适应变化的机械负荷,并且多方向负荷的特定组合似乎对重塑具有协同作用。但是,大多数对工程化血管组织工程进行机械刺激的研究仅采用单轴刺激。在这里,我们介绍一种新颖的计算机控制的生物反应器和生物力学测试设备,旨在精确并同时控制透壁压力的平均值和循环值(速率高达1 Hz,范围为40 mmHg),管腔流速和轴向长度(或负荷) )在培养期间应用于凝胶衍生,支架衍生和自组装衍生的组织工程血管,同时以6.6μm的分辨率监测血管几何形状。使用多光子共聚焦显微镜在无负载和负载条件下,在培养的多个时间点(在同一容器中)对活组织进行细胞外基质和细胞的间歇监测,以量化细胞和细胞外基质含量和组织的变化。该相同设备能够在培养中的多个时间点(在同一容器中)执行间歇性的圆柱形双轴生物力学测试,以量化培养过程中机械行为的变化。在这里,我们展示了这种新设备在自组装和胶原凝胶衍生的组织工程血管上的功能。

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