Palmroth Aleksi, Pitkänen Sanna, Hannula Markus, Paakinaho Kaarlo, Hyttinen Jari, Miettinen Susanna, Kellomäki Minna
Biomaterials and Tissue Engineering Group, BioMediTech, Faculty of Medicine and Health Technology, Tampere University, Korkeakoulunkatu 3, 33720 Tampere, Finland.
Adult Stem Cell Group, Tampere University, Tampere, Finland.
J R Soc Interface. 2020 Apr;17(165):20200102. doi: 10.1098/rsif.2020.0102. Epub 2020 Apr 1.
Micro-computed tomography (micro-CT) provides a means to analyse and model three-dimensional (3D) tissue engineering scaffolds. This study proposes a set of micro-CT-based tools firstly for evaluating the microstructure of scaffolds and secondly for comparing different cell seeding methods. The pore size, porosity and pore interconnectivity of supercritical CO processed poly(l-lactide-co--caprolactone) (PLCL) and PLCL/β-tricalcium phosphate scaffolds were analysed using computational micro-CT models. The models were supplemented with an experimental method, where iron-labelled microspheres were seeded into the scaffolds and micro-CT imaged to assess their infiltration into the scaffolds. After examining the scaffold architecture, human adipose-derived stem cells (hASCs) were seeded into the scaffolds using five different cell seeding methods. Cell viability, number and 3D distribution were evaluated. The distribution of the cells was analysed using micro-CT by labelling the hASCs with ultrasmall paramagnetic iron oxide nanoparticles. Among the tested seeding methods, a forced fluid flow-based technique resulted in an enhanced cell infiltration throughout the scaffolds compared with static seeding. The current study provides an excellent set of tools for the development of scaffolds and for the design of 3D cell culture experiments.
微计算机断层扫描(micro-CT)提供了一种分析和模拟三维(3D)组织工程支架的方法。本研究首先提出了一套基于micro-CT的工具,用于评估支架的微观结构,其次用于比较不同的细胞接种方法。使用计算micro-CT模型分析了超临界CO处理的聚(L-丙交酯-co-ε-己内酯)(PLCL)和PLCL/β-磷酸三钙支架的孔径、孔隙率和孔隙连通性。该模型辅以一种实验方法,即将铁标记的微球接种到支架中,并进行micro-CT成像以评估它们在支架中的渗透情况。在检查了支架结构后,使用五种不同的细胞接种方法将人脂肪来源干细胞(hASC)接种到支架中。评估了细胞活力、数量和三维分布。通过用超小顺磁性氧化铁纳米颗粒标记hASC,使用micro-CT分析细胞的分布。在测试的接种方法中,与静态接种相比,基于强制流体流动的技术导致细胞在整个支架中的渗透增强。本研究为支架的开发和三维细胞培养实验的设计提供了一套出色的工具。