B Malafaya P P, Pedro A J, Peterbauer A, Gabriel C, Redl H, Reis R L
3B's Research Group-Biomaterials, Biomimetics and Biodegradables, Dept. Polymer Eng., Univ. of Minho, Campus de Gualtar, 4710-057, Braga, Portugal.
J Mater Sci Mater Med. 2005 Dec;16(12):1077-85. doi: 10.1007/s10856-005-4709-4.
It is well accepted that natural tissue regeneration is unlikely to occur if the cells are not supplied with an extracellular matrix (ECM) substitute. With this goal, several different methodologies have been used to produce a variety of 3D scaffolds as artificial ECM substitutes suitable for bone and cartilage tissue engineering. Furthermore, osteochondral tissue engineering presents new challenges since the combination of scaffolding and co-culture requirements from both bone and cartilage applications is required in order to achieve a successful osteochondral construct. In this paper, an innovative processing route based on a chitosan particles aggregation methodology for the production of cartilage and osteochondral tissue engineering scaffolds is reported. An extensive characterization is presented including a morphological evaluation using Micro-Computed Tomography (microCT) and 3D virtual models built with an image processing software. Mechanical and water uptake characterizations were also carried out, evidencing the potential of the developed scaffolds for the proposed applications. Cytotoxicity tests show that the developed chitosan particles agglomerated scaffolds do not exert toxic effects on cells. Furthermore, osteochondral bilayered scaffolds could also be developed. Preliminary seeding of mesenchymal stem cells isolated from human adipose tissue was performed aiming at developing solutions for chondrogenic and osteogenic differentiation for osteochondral tissue engineering applications.
如果不给细胞提供细胞外基质(ECM)替代物,自然组织再生就不太可能发生,这一点已得到广泛认可。出于这个目的,人们采用了几种不同的方法来制造各种3D支架,作为适用于骨和软骨组织工程的人工ECM替代物。此外,骨软骨组织工程带来了新的挑战,因为为了成功构建骨软骨结构,需要结合来自骨和软骨应用的支架和共培养要求。本文报道了一种基于壳聚糖颗粒聚集方法的创新加工路线,用于生产软骨和骨软骨组织工程支架。文中给出了广泛的表征,包括使用微计算机断层扫描(microCT)进行的形态学评估以及用图像处理软件构建的3D虚拟模型。还进行了力学和吸水性表征,证明了所开发支架在拟议应用中的潜力。细胞毒性测试表明,所开发的壳聚糖颗粒团聚支架对细胞没有毒性作用。此外,还可以开发骨软骨双层支架。对从人脂肪组织中分离的间充质干细胞进行了初步接种,旨在为骨软骨组织工程应用开发软骨生成和成骨分化的解决方案。