Bueno Ericka M, Bilgen Bahar, Barabino Gilda A
Department of Mechanical and Industrial Engineering, Northeastern University, Boston, Massachusetts, USA.
Tissue Eng Part A. 2009 Apr;15(4):773-85. doi: 10.1089/ten.tea.2008.0081.
Functional engineered cartilage constructs represent a promising therapeutic approach for the replacement of damaged articular cartilage. The in vitro generation of cartilage tissue suitable for repair requires an understanding of the complex interrelationships between environmental cues, such as hydrodynamic forces, and tissue growth and development. In the present study, engineered cartilage constructs were cultivated in four well-defined hydrodynamic environments within a bioreactor, and correlations were established between construct ultrastructural and mechanical properties and key hydrodynamic parameters. Results suggest that even for similar composition, constructs may exhibit different mechanical properties due to differences in their ultrastructure that can be modulated by hydrodynamic parameters. For example, improved mechanical properties were observed in constructs that exhibited a thick fibrous outer capsule as a result of cultivation under increased hydrodynamic shear. In particular, uniformity in the contribution of the fluid velocity vectors (axial, radial, and tangential) to the total fluid velocity and shear stress were the hydrodynamic parameters that most affected the construct properties under investigation. The correlations identified here may be useful in the development of engineered tissue growth models that inform the design of bioreactor cultivation systems toward the production of clinically relevant engineered cartilage.
功能性工程软骨构建体是一种很有前景的治疗方法,可用于替换受损的关节软骨。体外生成适合修复的软骨组织需要了解环境线索(如流体动力)与组织生长发育之间复杂的相互关系。在本研究中,工程软骨构建体在生物反应器内四种明确的流体动力环境中培养,并在构建体的超微结构和力学性能与关键流体动力参数之间建立了相关性。结果表明,即使组成相似,构建体也可能因其超微结构的差异而表现出不同的力学性能,而这种差异可由流体动力参数调节。例如,在增加流体动力剪切力作用下培养出具有厚纤维外囊的构建体,其力学性能得到改善。特别是,流体速度矢量(轴向、径向和切向)对总流体速度和剪应力贡献的均匀性是最影响所研究构建体性能的流体动力参数。此处确定的相关性可能有助于开发工程组织生长模型,为生物反应器培养系统的设计提供参考,以生产临床相关的工程软骨。