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Individual-based modelling of angiogenesis inside three-dimensional porous biomaterials

机译:三维多孔生物材料内部基于个体的血管生成建模

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This paper presents a simulation modelling framework to study the growth of blood vessels and cells through a porous tissue engineering scaffold. The model simulates the migration of capillaries and the formation of a vascular network through a single pore of a tissue engineering scaffold when it is embedded in living tissue. The model also describes how the flow of blood through the network changes as growth proceeds. Results are given for how the different strategies of seeding the pore with cells affects the extent of vascularisation. Also simulations are made to compare results where the values of different model parameters are varied such as the pore dimensions, the density of endothelial cells seeded into the pore, and the release rate of growth factor from the scaffold into the pore. The modelling framework described in this paper is useful for exploring experimental strategies for producing well-vascularised tissue engineered constructs, and is therefore potentially important to the field of regenerative medicine.
机译:本文提出了一个模拟建模框架,以研究通过多孔组织工程支架的血管和细胞的生长。该模型模拟毛细血管的迁移和通过组织工程支架的单个孔嵌入到活组织中时血管网络的形成。该模型还描述了通过网络的血流如何随着生长的进行而变化。给出了用细胞接种孔的不同策略如何影响血管形成程度的结果。还进行了模拟比较,以比较不同模型参数的值(例如孔尺寸,接种到孔中的内皮细胞的密度以及生长因子从支架释放到孔中)的结果。本文中描述的建模框架可用于探索生产良好血管化组织工程构建体的实验策略,因此对于再生医学领域可能具有重要意义。

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