Sengers Bram G, Taylor Mark, Please Colin P, Oreffo Richard O C
Bone & Joint Research Group, Developmental Origins of Health & Disease, University of Southampton, Southampton General Hospital, Tremona Road, Southampton SO16 6YD, UK.
Biomaterials. 2007 Apr;28(10):1926-40. doi: 10.1016/j.biomaterials.2006.12.008. Epub 2006 Dec 18.
Improved biological and mechanical functionality of musculoskeletal tissue-engineered constructs is required for clinical application, which can only be achieved by comprehensive multidisciplinary research. This review focuses on the contribution of computational modelling as a framework for obtaining an integrated understanding of key processes, which include: nutrient transport and utilization, matrix formation, cell population dynamics, cell attachment and migration, and local cell-cell interactions. Such an integrated perspective of these key aspects will be critical to open up new directions in tissue engineering research, as significant progress can be made by combining existing computational and experimental methods. Furthermore, theoretical modelling has enormous potential in applications ranging from the interpretation of experimental results and the identification of the main governing processes, to the optimization of practical tissue engineering protocols with implications therein for an increasing ageing population.
肌肉骨骼组织工程构建体的生物和机械功能的改善是临床应用所必需的,而这只能通过全面的多学科研究来实现。本综述重点关注计算建模作为一个框架的贡献,以获得对关键过程的综合理解,这些关键过程包括:营养物质运输与利用、基质形成、细胞群体动态、细胞附着与迁移以及局部细胞间相互作用。对这些关键方面的这种综合观点对于开拓组织工程研究的新方向至关重要,因为通过结合现有的计算和实验方法可以取得重大进展。此外,理论建模在从解释实验结果和识别主要控制过程到优化实际组织工程方案等应用中具有巨大潜力,这对日益老龄化的人口具有重要意义。