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Functional compressive mechanics and tissue biocompatibility of an injectable SF/PU hydrogel for nucleus pulposus replacement

机译:SF / PU可注射水凝胶替代髓核的功能性压缩力学和组织生物相容性

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摘要

In spinal degenerative disease, an injectable liquid hydrogel can fill in defect entirely, lessen the danger of implant relocation and following loss of disc height, minimizing the operative trauma. Here, we propose an injectable in-situ chemically cross-linked hydrogel by a two-component reaction of liquid silk fibroin with liquid polyurethane at physiological temperature conditions. Confined compression tests and fatigue tests were reported to assess physical properties of the hydrogel. Impact of different diameter on the biomechanical behaviours was tested to evaluate the clinical potentiality of the hydrogel for replacing nucleus pulposus. Degradation behaviours in different solutions and animal experiments were also investigated to examine the tissue biocompatibility of the hydrogel. The hydrogel modulus was affected by the hydrogel geometrical (diameter) parameters. SF/PU composite hydrogel can survive a million cycles, unconstrained fatigue resistance. More importantly, in vivo biocompatibility using New Zealand white rabbits, showed good biocompatibility over a three-month period in culture. Particularly, they showed the significant clinical merit of providing stronger axial compressive stiffness on confined compression test. Based on the outcomes of the present research, the SF/PU composite hydrogel may provide significant advantages for use in future clinical application in replacing nucleus pulposus field.
机译:在脊柱退行性疾病中,可注射的液态水凝胶可完全填充缺损,减少植入物移位和椎间盘高度损失的危险,从而最大程度地减少手术创伤。在这里,我们提出了一种在生理温度条件下通过液体丝素蛋白与液体聚氨酯的两组分反应可注射的原位化学交联水凝胶。据报道,压缩试验和疲劳试验评估了水凝胶的物理性能。测试了不同直径对生物力学行为的影响,以评估水凝胶替代髓核的临床潜力。还研究了在不同溶液和动物实验中的降解行为,以研究水凝胶的组织生物相容性。水凝胶模量受水凝胶的几何(直径)参数影响。 SF / PU复合水凝胶可以承受一百万次循环,不受限制的抗疲劳性。更重要的是,使用新西兰白兔的体内生物相容性在培养的三个月内显示出良好的生物相容性。特别是,他们显示出在有限的压缩测试中提供更强的轴向压缩刚度的重要临床价值。基于本研究的结果,SF / PU复合水凝胶可为替换髓核领域的未来临床应用提供重要优势。

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