...
首页> 外文期刊>Biotechnology and Bioengineering >A Validated Model of GAG Deposition, Cell Distribution, and Growth of Tissue Engineered Cartilage Cultured in a Rotating Bioreactor
【24h】

A Validated Model of GAG Deposition, Cell Distribution, and Growth of Tissue Engineered Cartilage Cultured in a Rotating Bioreactor

机译:在旋转生物反应器中培养的组织工程软骨的GAG沉积,细胞分布和生长的验证模型

获取原文
获取原文并翻译 | 示例

摘要

In this work a new phenomenological model of growth of cartilage tissue cultured in a rotating bioreactor is developed. It represents an advancement of a previously derived model of deposition of glycosaminoglycan (GAG) in engineered cartilage by (i) introduction of physiological mechanisms of proteoglycan accumulation in the extracellular matrix (ECM) as well as by correlating (ii) local cell densities and (iii) tissue growth to the ECM composition. In particular, previously established predictions and correlations of local oxygen concentrations and GAG synthesis rates are extended to distinguish cell secreted proteoglycan monomers free to diffuse in cell surroundings and outside from the engineered construct, from large aggrecan molecules, which are constrained within the ECM and practically immovable. The model includes kinetics of aggregation, that is, transformation of mobile GAG species into immobile aggregates as well as maintenance of the normal ECM composition after the physiological GAG concentration is reached by incorporation of a product inhibition term. The model also includes mechanisms of the temporal evolution of cell density distributions and tissue growth under in vitro conditions. After a short initial proliferation phase the total cell number in the construct remains constant, but the local cell distribution is leveled out by GAG accumulation and repulsion due to negative molecular charges. Furthermore, strong repulsive forces result in expansion of the local tissue elements observed macroscopically as tissue growth (i.e., construct enlargement). The model is validated by comparison with experimental data of (i) GAG distribution and leakage, (ii) spatial-temporal distributions of cells, and (iii) tissue growth reported in previous works. Validation of the model predictive capability-against a selection of measured data that were not used to construct the model-suggests that the model successfully describes the interplay of several simultaneous processes carried out during in vitro cartilage tissue regeneration and indicates that this approach could also be attractive for application in other tissue engineering systems. Biotechnol. Bioeng. 2010;105: 842-853.
机译:在这项工作中,开发了在旋转生物反应器中培养的软骨组织生长的新现象学模型。它通过(i)引入蛋白聚糖在细胞外基质(ECM)中积累的生理机制以及关联(ii)局部细胞密度和(a)来表示工程软骨中糖胺聚糖(GAG)先前衍生的沉积模型的进步。 iii)组织生长到ECM组合物。特别地,先前建立的对局部氧浓度和GAG合成速率的预测和相关性得以扩展,以区分从细胞聚集蛋白聚糖分子(受ECM内和实际约束)中自由散布在细胞周围和工程结构外部的细胞分泌蛋白聚糖单体。不动该模型包括聚集的动力学,即将可移动的GAG物种转化为不可移动的聚集体,以及通过加入产物抑制项达到生理GAG浓度后维持正常ECM组成。该模型还包括体外条件下细胞密度分布的时间演变和组织生长的机制。在短暂的初始增殖阶段后,构建体中的总细胞数保持恒定,但由于负分子电荷,GAG积​​累和排斥使局部细胞分布趋于平衡。此外,强排斥力导致局部组织元件的膨胀,该局部组织元件在宏观上随着组织生长而观察到(即,构造增大)。通过与(i)GAG分布和泄漏,(ii)细胞的时空分布和(iii)先前工作中报道的组织生长的实验数据进行比较,验证了该模型。验证模型的预测能力(针对未用于构建模型的测量数据的选择),表明模型成功描述了体外软骨组织再生过程中同时进行的多个过程的相互作用,并表明该方法也可以在其他组织工程系统中的应用很有吸引力。生物技术。生恩2010; 105:842-853。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号