首页> 美国卫生研究院文献>Journal of Biomechanical Engineering >Structural and Chemical Modification to Improve Adhesive and Material Properties of Fibrin-Genipin for Repair of Annulus Fibrosus Defects in Intervertebral Disks
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Structural and Chemical Modification to Improve Adhesive and Material Properties of Fibrin-Genipin for Repair of Annulus Fibrosus Defects in Intervertebral Disks

机译:结构和化学修饰以提高纤维蛋白-Genipin修复椎间盘纤维环缺损的粘附性和材料性能

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摘要

Annulus fibrosus (AF) defects from intervertebral disk (IVD) herniation and degeneration are commonly associated with back pain. Genipin-crosslinked fibrin hydrogel (FibGen) is an injectable, space-filling AF sealant that was optimized to match AF shear properties and partially restored IVD biomechanics. This study aimed to enhance mechanical behaviors of FibGen to more closely match AF compressive, tensile, and shear properties by adjusting genipin crosslink density and by creating a composite formulation by adding Poly(D,L-lactide-co-glycolide) (PDLGA). This study also evaluated effects of thrombin concentration and injection technique on gelation kinetics and adhesive strength. Increasing FibGen genipin concentration from 1 to 36 mg/mL significantly increased adhesive strength (∼5 to 35 kPa), shear moduli (∼10 to 110 kPa), and compressive moduli (∼25 to 150 kPa) with concentration-dependent effects, and spanning native AF properties. Adding PDLGA to FibGen altered the material microstructure on electron microscopy and nearly tripled adhesive strength, but did not increase tensile moduli, which remained nearly 5× below native AF, and had a small increase in shear moduli and significantly decreased compressive moduli. Increased thrombin concentration decreased gelation rate to < 5 min and injection methods providing a structural FibGen cap increased pushout strength by ∼40%. We conclude that FibGen is highly modifiable with tunable mechanical properties that can be formulated to be compatible with human AF compressive and shear properties and gelation kinetics and injection techniques compatible with clinical discectomy procedures. However, further innovations, perhaps with more efficient fiber reinforcement, will be required to enable FibGen to match AF tensile properties.
机译:椎间盘(IVD)突出和变性引起的纤维环(AF)缺陷通常与背痛有关。 Genipin交联的纤维蛋白水凝胶(FibGen)是一种可注射的,充满空间的AF密封胶,经过优化可匹配AF剪切特性并部分恢复IVD生物力学。这项研究旨在通过调整Genipin交联密度并通过添加聚(D,L-丙交酯-共-乙交酯)(PDLGA)创建复合配方来增强FibGen的机械性能,使其更接近于AF的压缩,拉伸和剪切性能。这项研究还评估了凝血酶浓度和注射技术对胶凝动力学和粘合强度的影响。将FibGen genipin的浓度从1增加到36 mg / mL会显着增加粘合强度(〜5至35 kPa),剪切模量(〜10至110 kPa)和压缩模量(〜25至150 kPa),并具有浓度依赖性,并且跨越原生AF属性。在FibGen中添加PDLGA可以改变电子显微镜下的材料微观结构,并使粘合强度提高近三倍,但不会增加拉伸模量,拉伸模量仍比天然AF低近5倍,并且剪切模量略有增加,而压缩模量则大大降低。凝血酶浓度的增加使胶凝速率降低至<5 min,而采用提供结构性FibGen帽的注射方法则可将推出强度提高约40%。我们得出的结论是,FibGen具有高度可调节的机械性能,可调节为与人房颤压缩和剪切性能以及与临床椎间盘切除术程序兼容的胶凝动力学和注射技术兼容。但是,可能需要进一步的创新,可能需要更有效的纤维增强,才能使FibGen匹配AF的拉伸性能。

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