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Dopamine-Mediated Sclerotization of Regenerated Chitin in Ionic Liquid

机译:多巴胺介导的离子液体中几丁质的硬化

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摘要

Chitin is a promising structural material for biomedical applications, due to its many advantageous properties and abundance in nature. However, its usage and development in the biomedical field have been stagnant, because of chitin’s poor mechanical properties in wet conditions and the difficulties in transforming it into an applicable form. To overcome these challenges, we created a novel biomimetic chitin composite. This regenerated chitin, prepared with ionic liquid, showed improved mechanical properties in wet conditions by mimicking insect cuticle and squid beak sclerotization, i.e., catechol-meditated cross-linking. By ionic liquid-based heat treatment, dopamine oxidation produced melanin-like compounds and dopamine-meditated cross-links without any solvent evaporation and oxidant utilization. The dopamine-meditated sclerotization increased the ultimate tensile strength (UTS) of the regenerated chitin by 2.52-fold, measured after six weeks of phosphate-buffered saline (PBS) submersion. In addition, the linear swelling ratio (LSR) of the chitin film was reduced by about 22%. This strategy raises a possibility of using regenerated chitin as an artificial hard tissue in wet conditions.
机译:几丁质由于其许多有利的特性和自然界中的丰富性,是用于生物医学应用的有前途的结构材料。但是,由于几丁质在潮湿条件下的机械性能较差,并且很难将其转化为可应用的形式,因此在生物医学领域的使用和开发一直处于停滞状态。为了克服这些挑战,我们创建了一种新型的仿生甲壳素复合材料。用离子液体制备的这种再生几丁质在潮湿条件下通过模仿昆虫的表皮和鱿鱼喙的硬化,即邻苯二酚介导的交联而表现出改善的机械性能。通过基于离子液体的热处理,多巴胺氧化生成黑色素样化合物和多巴胺介导的交联,而没有任何溶剂蒸发和氧化剂利用。在磷酸盐缓冲液(PBS)浸没六周后,多巴胺介导的硬化使再生甲壳质的极限抗张强度(UTS)增加了2.52倍。另外,几丁质膜的线性溶胀率(LSR)降低了约22%。这种策略增加了在潮湿条件下将再生甲壳质用作人造硬组织的可能性。

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