Seda Tiğli R, Karakeçili Ayşe, Gümüşderelioğlu Menemşe
Chemical Engineering Department, Hacettepe University, Beytepe, Ankara, Turkey.
J Mater Sci Mater Med. 2007 Sep;18(9):1665-74. doi: 10.1007/s10856-007-3066-x. Epub 2007 May 5.
In this study, the influence of degree of deacetylation (DD) and composition on some structural and biological properties of chitosan scaffolds were examined in vitro. 3D chitosan scaffolds of 2% (w/v) and 3% (w/v) composition in different DDs i.e. 75-85% and >85% were prepared by freeze-drying method at -80 degrees C. We noticed that >85% deacetylated chitosan scaffolds of 2% (w/v) composition has a highly interconnected morphological structure having approximately 100 mum pore size with 0.0917 N/mm(2) compression modulus. L929 fibroblastic cells were cultured on chitosan scaffolds in order to evaluate their biocompatibilities. Cell culture studies demonstrated that fibroblastic cell attachment and proliferation is affected by DD. The higher deacetylated chitosan scaffolds strongly supported the attachment and proliferation when compared with the lower deacetylated scaffolds. MTT assay indicated that >85% deacetylated chitosan scaffolds of 2% (w/v) composition, having the highest specific growth rate 0.017 h(-1) of all, was found to be the most suitable for cell culture studies and a potential candidate for tissue engineering with enhanced biostability and good biocompatibility.
在本研究中,体外考察了脱乙酰度(DD)和组成对壳聚糖支架某些结构和生物学特性的影响。通过在-80℃下冷冻干燥法制备了不同脱乙酰度(即75 - 85%和>85%)、组成分别为2%(w/v)和3%(w/v)的3D壳聚糖支架。我们注意到,组成2%(w/v)、脱乙酰度>85%的壳聚糖支架具有高度相互连通的形态结构,孔径约为100μm,压缩模量为0.0917 N/mm²。将L929成纤维细胞培养在壳聚糖支架上以评估其生物相容性。细胞培养研究表明,成纤维细胞的附着和增殖受脱乙酰度影响。与脱乙酰度较低的支架相比,脱乙酰度较高的壳聚糖支架对细胞附着和增殖的支持作用更强。MTT分析表明,组成2%(w/v)、脱乙酰度>85%的壳聚糖支架具有所有样品中最高的比生长速率0.017 h⁻¹,被发现最适合细胞培养研究,是具有增强生物稳定性和良好生物相容性且有潜力用于组织工程的候选材料。