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A Novel Pulsatile Bioreactor for Mechanical Stimulation of Tissue Engineered Cardiac Constructs

机译:一种新型脉冲生物反应器,用于机械刺激组织工程心脏构造。

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After myocardial infarction, the implantation of stem cell seeded scaffolds on the ischemic zone represents a promising strategy for restoration of heart function. However, mechanical integrity and functionality of tissue engineered constructs need to be determined prior to implantation. Therefore, in this study a novel pulsatile bioreactor mimicking the myocardial contraction was developed to analyze the behavior of mesenchymal stem cells derived from umbilical cord tissue (UCMSC) colonized on titanium-coated polytetrafluorethylene scaffolds to friction stress. The design of the bioreactor enables a simple handling and defined mechanical forces on three seeded scaffolds at physiological conditions. The compact system made of acrylic glass, Teflon®, silicone, and stainless steel allows the comparison of different media, cells and scaffolds. The bioreactor can be gas sterilized and actuated in a standard incubator. Macroscopic observations and pressure-measurements showed a uniformly sinusoidal pulsation, indicating that the bioreactor performed well. Preliminary experiments to determine the adherence rate and morphology of UCMSC after mechanical loadings showed an almost confluent cellular coating without damage on the cell surface. In summary, the bioreactor is an adequate tool for the mechanical stress of seeded scaffolds and offers dynamic stimuli for pre-conditioning of cardiac tissue engineered constructs in vitro.
机译:心肌梗塞后,将干细胞接种的支架植入缺血区域代表了恢复心功能的有前途的策略。然而,在植入之前需要确定组织工程构建体的机械完整性和功能性。因此,在这项研究中,开发了一种新型的模仿心肌收缩的搏动生物反应器,以分析源自在钛涂层聚四氟乙烯支架上定植的摩擦力的脐带组织(UCMSC)衍生的间充质干细胞的行为。生物反应器的设计能够在生理条件下对三个接种的支架进行简单的处理和确定的机械力。由丙烯酸玻璃,Teflon ®,硅树脂和不锈钢制成的紧凑型系统可以比较不同的培养基,细胞和支架。生物反应器可以在标准培养箱中进行气体灭菌和启动。宏观观察和压力测量显示出均匀的正弦脉动,表明该生物反应器表现良好。初步实验确定机械负载后UCMSC的黏附率和形态,显示几乎融合的细胞被膜没有对细胞表面的破坏。综上所述,生物反应器是一种有效的工具,可用于种子支架的机械应力,并为体外心脏组织工程构建体的预处理提供动态刺激。

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