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首页> 外文期刊>Tissue engineering, Part A >Using functional tissue engineering and bioreactors to mechanically stimulate tissue-engineered constructs.
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Using functional tissue engineering and bioreactors to mechanically stimulate tissue-engineered constructs.

机译:使用功能性组织工程和生物反应器机械刺激组织工程构造。

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Bioreactors precondition tissue-engineered constructs (TECs) to improve integrity and hopefully repair. In this paper, we use functional tissue engineering to suggest criteria for preconditioning TECs. Bioreactors should (1) control environment during mechanical stimulation; (2) stimulate multiple constructs with identical or individual waveforms; (3) deliver precise displacements, including those that mimic in vivo activities of daily living (ADLs); and (4) adjust displacement patterns based on reaction loads and biological activity. We apply these criteria to three bioreactors. We have placed a pneumatic stimulator in a conventional incubator and stretched four constructs in each of five silicone dishes. We have also programmed displacement-limited stimuli that replicate frequencies and peak in vivo patellar tendon (PT) strains. Cellular activity can be monitored from spent media. However, our design prevents direct TEC force measurement. We have improved TEC stiffness as well as PT repair stiffness and shown correlations between the two. We have also designed an incubator to fit within each of two electromagnetic stimulators. Each incubator provides cell viability like a commercial incubator. Multiple constructs are stimulated with precise displacements that can mimic ADL strain patterns and record individual forces. Future bioreactors could be further improved by controlling and measuring TEC displacements and forces to create more functional tissues for surgeons and their patients.
机译:生物反应器可对组织工程构造(TEC)进行预处理,以提高完整性并有望修复。在本文中,我们使用功能性组织工程来建议TEC预处理的标准。生物反应器应(1)在机械刺激过程中控制环境; (2)刺激多个具有相同或单个波形的结构; (3)提供精确的位移,包括模拟日常生活中体内活动的位移(ADL); (4)根据反应负荷和生物活性调整位移模式。我们将这些标准应用于三个生物反应器。我们在传统的培养箱中放置了一个气动刺激器,并在五个硅胶皿中的每个中拉伸了四个结构。我们还对位移受限的刺激进行了编程,可复制体内and骨肌腱(PT)菌株的频率和峰值。可以从用过的培养基中监测细胞活性。但是,我们的设计阻止了直接TEC力的测量。我们提高了TEC刚度以及PT修复刚度,并显示了两者之间的相关性。我们还设计了一个孵化器,以适合两个电磁刺激器中的每一个。每个培养箱都像商业培养箱一样提供细胞活力。用精确的位移刺激多个结构,这些位移可以模拟ADL应变模式并记录单个力。未来的生物反应器可以通过控制和测量TEC的位移和力来进一步改善,以为外科医生及其患者创造更多的功能组织。

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