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3D-printable zwitterionic nano-composite hydrogel system for biomedical applications

机译:用于生物医学应用的3D可印刷的两性离子纳米复合水凝胶系统

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摘要

Herein, the cytotoxicity of a novel zwitterionic sulfobetaine hydrogel system with a nano-clay crosslinker has been investigated. We demonstrate that careful selection of the composition of the system (monomer to Laponite content) allows the material to be formed into controlled shapes using an extrusion based additive manufacturing technique with the ability to tune the mechanical properties of the product. Moreover, the printed structures can support their own weight without requiring curing during printing which enables the use of a printing-then-curing approach. Cell culture experiments were conducted to evaluate the neural cytotoxicity of the developed hydrogel system. Cytotoxicity evaluations were conducted on three different conditions; a control condition, an indirect condition (where the culture medium used had been in contact with the hydrogel to investigate leaching) and a direct condition (cells growing directly on the hydrogel). The result showed no significant difference in cell viability between the different conditions and cells were also found to be growing on the hydrogel surface with extended neurites present.
机译:在本文中,具有纳米粘土交联剂的新型两性离子磺基甜菜碱的水凝胶系统的细胞毒性进行了研究。我们证明系统(单体的Laponite含量)的组合物的仔细选择允许使用基于添加剂的制造技术与能够调整的产品的机械性能的挤出成形为控制形状的材料。此外,印刷结构可以支持其自身的重量而无需印刷其使得能够使用印刷然后固化方法的期间需要固化。细胞培养实验进行评估发达的水凝胶系统的神经细胞毒性。细胞毒性评估是在三个不同的条件下进行;控制条件,间接条件(其中,使用的培养基已经在与水凝胶接触,以调查浸出)和直接条件(细胞在水凝胶直接生长)。结果表明在不同的条件和细胞之间细胞活力无显著差异,还发现与神经突延长本水凝胶表面上生长。

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