Svensson A, Nicklasson E, Harrah T, Panilaitis B, Kaplan D L, Brittberg M, Gatenholm P
Department of Chemical and Biological Engineering, Tufts University, Boston, MA 02155, USA.
Biomaterials. 2005 Feb;26(4):419-31. doi: 10.1016/j.biomaterials.2004.02.049.
Tissue constructs for cartilage with native mechanical properties have not been described to date. To address this need the bacterial cellulose (BC) secreted by Gluconacetobacter xylinus (= Acetobacter xylinum) was explored as a novel scaffold material due to its unusual material properties and degradability. Native and chemically modified BC materials were evaluated using bovine chondrocytes. The results indicate that unmodified BC supports chondrocyte proliferation at levels of approximately 50% of the collagen type II substrate while providing significant advantages in terms of mechanical properties. Compared to tissue culture plastic and calcium alginate, unmodified BC showed significantly higher levels of chondrocyte growth. Chemical sulfation and phosphorylation of the BC, performed to mimic the glucosaminoglycans of native cartilage, did not enhance chondrocyte growth while the porosity of the material did affect chondrocyte viability. The BC did not induce significant activation of proinflammatory cytokine production during in vitro macrophage screening. Hence, unmodified BC was further explored using human chondrocytes. TEM analysis and RNA expression of the collagen II from human chondrocytes indicated that unmodified BC supports proliferation of chondrocytes. In addition, ingrowth of chondrocytes into the scaffold was verified by TEM. The results suggest the potential for this biomaterial as a scaffold for tissue engineering of cartilage.
迄今为止,尚未有关于具有天然机械性能的软骨组织构建物的描述。为满足这一需求,木醋杆菌(=醋酸杆菌)分泌的细菌纤维素(BC)因其独特的材料性能和可降解性,被探索作为一种新型支架材料。使用牛软骨细胞对天然和化学改性的BC材料进行了评估。结果表明,未改性的BC能支持软骨细胞增殖,其增殖水平约为II型胶原基质的50%,同时在机械性能方面具有显著优势。与组织培养塑料和海藻酸钙相比,未改性的BC显示出显著更高的软骨细胞生长水平。对BC进行化学硫酸化和磷酸化以模拟天然软骨的糖胺聚糖,但这并未增强软骨细胞生长,而材料的孔隙率确实影响软骨细胞活力。在体外巨噬细胞筛选过程中,BC未诱导促炎细胞因子产生的显著激活。因此,使用人软骨细胞对未改性的BC进行了进一步探索。透射电镜分析和人软骨细胞II型胶原的RNA表达表明,未改性的BC支持软骨细胞增殖。此外,通过透射电镜证实了软骨细胞向支架内生长。结果表明这种生物材料作为软骨组织工程支架具有潜力。