Group for Bone Biology and Orthopaedic Research, Department for Biomedical Research, University of Bern, Bern, Switzerland.
Graduate School for Cellular and Biomedical Sciences, University of Bern, Bern, Switzerland.
Tissue Eng Part C Methods. 2020 Dec;26(12):617-627. doi: 10.1089/ten.TEC.2020.0161.
Any significant evaluation of cartilage tissue engineering and cartilage repair strategies has to be performed under the harsh conditions encountered within synovial joints. To this end, we have developed a novel automated physiological robot reactor system (PRRS) that is capable of recapitulating complex physiological motions and load patterns within an environment similar to that found in the human knee. The PRRS consists of a mechanical stimulation unit (MSU) and an automatic sample changer (ASC) within an environment control box in which the humidity, temperature, and gas composition are tightly regulated. The MSU has three linear (orthogonal) axes and one rotational degree of freedom (around the z-axis). The ASC provides space for up to 24 samples, which can be allocated to individual stimulation patterns. Cell-seeded scaffolds and tissue culture systems were established to demonstrate the applicability of the PRRS to the investigation of the effect of load and environmental conditions on engineering and maintenance of articular cartilage . The bioreactor is a flexible system that has the potential to be applied for culturing connective tissues other than cartilage, such as bone and intervertebral disc tissue, even though the mechanical and environmental parameters are very different.
任何对软骨组织工程和软骨修复策略的重要评估都必须在滑膜关节中遇到的恶劣条件下进行。为此,我们开发了一种新型的自动化生理机器人反应器系统(PRRS),该系统能够在类似于人膝关节的环境中再现复杂的生理运动和负荷模式。PRRS 由机械刺激单元(MSU)和环境控制箱内的自动样品更换器(ASC)组成,在该环境中,湿度、温度和气体成分受到严格控制。MSU 有三个线性(正交)轴和一个旋转自由度(围绕 z 轴)。ASC 提供了多达 24 个样本的空间,可以将其分配给各个刺激模式。建立了细胞接种支架和组织培养系统,以证明 PRRS 适用于研究负荷和环境条件对关节软骨工程和维持的影响。该生物反应器是一个灵活的系统,有可能应用于培养除软骨以外的结缔组织,如骨和椎间盘组织,尽管机械和环境参数有很大的不同。