Department of Biochemistry and Molecular Biology, University of Bucharest, 91-95 Splaiul Independentei, 050095 Bucharest, Romania.
Biomed Res Int. 2013;2013:598056. doi: 10.1155/2013/598056. Epub 2013 Nov 7.
Cartilage tissue engineering (CTE) applications are focused towards the use of implantable biohybrids consisting of biodegradable scaffolds combined with in vitro cultured cells. Hyaluronic acid (HA) and chondroitin sulfate (CS) were identified as the most potent prochondrogenic factors used to design new biomaterials for CTE, while human adipose-derived stem cells (ASCs) were proved to display high chondrogenic potential. In this context, our aim was not only to build novel 3D porous scaffolds based on natural compounds but also to evaluate their in vitro biological performances. Therefore, for prospective CTE, collagen-sericin (Coll-SS) scaffolds improved with HA (5% or 10%) and CS (5% or 10%) were used as temporary physical supports for ASCs and were analyzed in terms of structural, thermal, morphological, and swelling properties and cytotoxic potential. To complete biocompatibility data, ASCs viability and proliferation potential were also assessed. Our studies revealed that Coll-SS hydrogels improved with 10% HA and 5% CS displayed the best biological performances in terms of cell viability, proliferation, morphology, and distribution. Thus, further work will address a novel 3D system including both HA 10% and CS 5% glycoproteins, which will probably be exposed to prochondrogenic conditions in order to assess its potential use in CTE applications.
软骨组织工程(CTE)的应用主要集中在使用可植入的生物杂交体上,这些杂交体由可生物降解的支架与体外培养的细胞结合而成。透明质酸(HA)和硫酸软骨素(CS)被确定为设计用于 CTE 的新型生物材料的最有效促软骨生成因子,而人脂肪来源干细胞(ASCs)被证明具有很高的软骨生成潜力。在这种情况下,我们的目标不仅是构建基于天然化合物的新型 3D 多孔支架,还要评估它们的体外生物学性能。因此,为了进行有前景的 CTE,我们使用了胶原蛋白-丝胶(Coll-SS)支架,该支架经过 HA(5%或 10%)和 CS(5%或 10%)的改良,作为 ASCs 的临时物理支撑,并从结构、热学、形态和溶胀性能以及细胞毒性潜力方面进行了分析。为了完成生物相容性数据,还评估了 ASCs 的活力和增殖潜力。我们的研究表明,Coll-SS 水凝胶经 10%HA 和 5%CS 改良后,在细胞活力、增殖、形态和分布方面表现出最佳的生物学性能。因此,进一步的工作将涉及一种新型的 3D 系统,该系统包括 10%HA 和 5%CS 这两种糖蛋白,可能会被暴露在促软骨生成的条件下,以评估其在 CTE 应用中的潜力。