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A novel bioreactor system for biaxial mechanical loading enhances the properties of tissue-engineered human cartilage

机译:用于双轴机械加载的新型生物反应器系统增强了组织工程化人类软骨的特性

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The ex vivo engineering of autologous cartilage tissues has the potential to revolutionize the clinical management of joint disorders. Yet, high manufacturing costs and variable outcomes associated with tissue-engineered implants are still limiting their application. To improve clinical outcomes and facilitate a wider use of engineered tissues, automated bioreactor systems capable of enhancing and monitoring neotissues are required. Here, we developed an innovative system capable of applying precise uni- or biaxial mechanical stimulation to developing cartilage neotissues in a tightly controlled and automated fashion. The bioreactor allows for simple control over the loading parameters with a user-friendly graphical interface and is equipped with a load cell for monitoring tissue maturation. Applying our bioreactor, we demonstrate that human articular chondrocytes encapsulated in hydrogels composed of gelatin methacryloyl (GelMA) and hyaluronic acid methacrylate (HAMA) respond to uni- and biaxial mechanical stimulation by upregulation of hyaline cartilage-specific marker genes. We further demonstrate that intermittent biaxial mechanostimulation enhances accumulation of hyaline cartilage-specific extracellular matrix. Our study underlines the stimulatory effects of mechanical loading on the biosynthetic activity of human chondrocytes in engineered constructs and the need for easy-to-use, automated bioreactor systems in cartilage tissue engineering.
机译:自体软骨组织的离体工程具有革新关节疾病临床管理的潜力。然而,与组织工程植入物相关的高制造成本和可变结果仍然限制了它们的应用。为了改善临床结果并促进工程组织的广泛使用,需要能够增强和监测新组织的自动化生物反应器系统。在这里,我们开发了一种创新的系统,该系统能够以严格控制和自动化的方式将精确的单轴或双轴机械刺激应用于发展软骨新组织。该生物反应器可通过用户友好的图形界面轻松控制加载参数,并配备了用于监测组织成熟度的称重传感器。应用我们的生物反应器,我们证明了封装在由明胶甲基丙烯酰基(GelMA)和透明质酸甲基丙烯酸酯(HAMA)组成的水凝胶中的人类关节软骨细胞通过上调透明软骨特异性标记基因来响应单轴和双轴机械刺激。我们进一步证明,间歇性双轴机械刺激增强了透明软骨特异性细胞外基质的积累。我们的研究强调了机械负荷对工程构建体中人软骨细胞生物合成活性的刺激作用,以及在软骨组织工程中需要易于使用的自动化生物反应器系统。

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