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Development of Collagen Cross-Linked with Dialdehyde Cellulose as a Potential 3D Scaffold for Neural Tissue Engineering

机译:胶原蛋白的发展与二醛纤维素交联作为神经组织工程的潜在3D支架

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摘要

Until now, failed to receive ideal scaffold for applications in nerve tissue engineering. In this study the synthesis and assessment of 3D collagen sponges modified using 2,3-dialdehyde cellulose (DAC) as the cross-linker is presented. FTIR results showed that cross-linking reactions occur between the amino groups of collagen and the aldehyde groups in DAC without affecting the collagen triple helix. Besides, the DSC results reveal that cross-linking of collagen by DAC significantly increase its temperature denaturation (T_d). This agrees well with results of DMTA analysis. The viscoelastic behavior of cross-linked collagen and improved mechanical properties was manifested by a shift of the tan 8 peak towards higher temperatures. The results suggest that the utilization of Col-DAC scaffolds may be considered as a potential strategy for neural tissue regeneration.
机译:到目前为止,未能接受神经组织工程中的应用的理想支架。在该研究中,介绍了使用2,3-二醛纤维素(DAC)作为交联剂改性的3D胶原海绵的合成和评估。 FTIR结果表明,在胶原蛋白的氨基和DAC中的醛基之间发生交联反应而不影响胶原三螺旋。此外,DSC结果表明,DAC的交联通过DAC的交联显着增加了其温度变性(T_D)。这与DMTA分析的结果一致。交联胶原的粘弹性行为和改进的机械性能通过褐色8峰的偏移到较高温度的偏移来表现出。结果表明,COL-DAC支架的利用可以被认为是神经组织再生的潜在策略。

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