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Elastic chitosan/chondroitin sulfate multilayer membranes

机译:弹性壳聚糖/硫酸软骨素多层膜

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Freestanding multilayered films were obtained using layer-by-layer (LbL) technology from the assembly of natural polyelectrolytes, namely chitosan (CHT) and chondroitin sulfate (CS). The morphology and the transparency of the membranes were evaluated. The influence of genipin (1 and 2 mg ml(-1)), a naturally-derived crosslinker agent, was also investigated in the control of the mechanical properties of the CHT/CS membranes. The water uptake ability can be tailored by changing the crosslinker concentration that also controls the Young's modulus and ultimate tensile strength. The maximum extension tends to decrease upon crosslinking with the highest genipin concentration, compromising the elastic properties of CHT/CS membranes: nevertheless, when using a lower genipin concentration, the ultimate tensile stress is similar to the non-crosslinked one, but exhibits a significantly higher modulus. Moreover, the crosslinked multilayer membranes exhibited shape memory properties, through a simple hydration action. The in vitro biological assays showed better L929 cell adhesion and proliferation when using the crosslinked membranes and confirmed the non-cytotoxicity of the developed CHT/CS membranes. Within this research work, we were able to construct freestanding biomimetic multilayer structures with tailored swelling, mechanical and biological properties that could find applicability in a variety of biomedical applications.
机译:使用多层(LbL)技术从天然聚电解质即壳聚糖(CHT)和硫酸软骨素(CS)的组装中获得独立的多层膜。评价了膜的形态和透明性。在控制CHT / CS膜的机械性能中,还研究了天然来源的交联剂—京尼平(1和2 mg ml(-1))的影响。吸水能力可以通过改变交联剂浓度来定制,该交联剂浓度还控制杨氏模量和极限拉伸强度。当以最高的Genipin浓度交联时,最大伸长率往往会降低,从而损害了CHT / CS膜的弹性:尽管如此,当使用较低的Genipin浓度时,其最终拉伸应力与未交联的相似,但表现出明显的拉伸应力。更高的模量此外,交联的多层膜通过简单的水合作用而表现出形状记忆特性。当使用交联膜时,体外生物学测定显示出更好的L929细胞粘附和增殖,并证实了已开发的CHT / CS膜的非细胞毒性。在这项研究工作中,我们能够构建具有量身定制的溶胀,机械和生物学特性的独立仿生多层结构,这些结构可以在各种生物医学应用中找到适用性。

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