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Effects of Variation of Chitosan Concentration on the Characteristics of Membrane Cellulose Bacteria-Chitosan Biocomposites as Candidates for Artificial Dura Mater

机译:壳聚糖浓度变异对人造硬母矿物作为膜纤维素细菌 - 壳聚糖生物复合材料的影响

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This study was conducted to determine the effect of variation in concentration of chitosan on the physical and biological characteristics of the membrane of bacterial cellulose-chitosan biocomposites through immersion precipitation method. Bacterial cellulose membrane was soaked in a solution of chitosan whose concentration variation are 0.1%; 0.3%; 0.5% and 0.7%. The characterization tests which were conducted included the analysis of functional groups (FTIR), tensile strength test, morphology test (SEM), and cytotoxicity assay using MTT Assay method. Based on the cluster analysis test, the results of FTIR spectra indicate changes in the physical bond which means that there is interaction between the bacterial cellulose membrane with chitosan on each sample. The bacteria produced cellulose membrane with tensile strength of 10.53 ± 0.19 MPa while the microbial cellulose membrane by adding 0.5% chitosan concentration had tensile strength value of 8:58 ± 0.19 MPa. It shows that with the addition of chitosan it would decrease the tensile strength in microbial cellulose membrane. This was shown by 496.2 nm - 2,032 μm pore size with a thickness (mm) of 0:35 ± 0.33 to 0.81 ± 0.26. Based on the test results of the analysis of functional groups, tensile strength test, and morphology test, membrane microbial cellulose-chitosan biocomposites have the potential to be used as artificial dura mater candidate.
机译:进行该研究以确定壳聚糖浓度变化对细菌纤维素 - 壳聚糖生物复合材料膜的物理和生物学特性通过浸渍沉淀法的影响。将细菌纤维素膜浸泡在壳聚糖的溶液中,其浓度变化为0.1%; 0.3%; 0.5%和0.7%。进行的表征试验包括使用MTT测定方法的官能团(FTIR),拉伸强度试验,形态学试验(SEM)和细胞毒性测定的分析。基于集群分析试验,FTIR光谱的结果表示物理键的变化,这意味着在每个样品上的细菌纤维素膜之间存在相互作用。细菌产生纤维素膜,拉伸强度为10.53±0.19MPa,而通过加入0.5%壳聚糖浓度的微生物纤维素膜具有8:58±0.19MPa的拉伸强度值。它表明,随着壳聚糖的添加,它会降低微生物纤维素膜中的拉伸强度。这由496.2nm - 2,032μm的孔径显示,厚度(mm)为0:35±0.33至0.81±0.26。基于官能团分析的测试结果,拉伸强度试验和形态试验,膜微生物纤维素 - 壳聚糖生物复合材料具有用作人造硬母候选者的潜力。

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