Composite Hydrogel Sealants for Annulus Fibrosus Repair

被引:2
|
作者
Li, Xuan [1 ]
Huo, Ran [1 ]
Li, Li [2 ]
Cherif, Hosni [2 ]
Lan, Xiaoyi [1 ,2 ]
Weber, Michael H. [2 ]
Haglund, Lisbet [2 ,3 ]
Li, Jianyu [1 ,2 ,4 ]
机构
[1] McGill Univ, Dept Mech Engn, Montreal, PQ H3A 0C3, Canada
[2] McGill Univ, Dept Surg, Montreal, PQ H3G 1A3, Canada
[3] Shriners Hosp Children, 1003 Decarie Blvd, Montreal, PQ H4A 0A9, Canada
[4] McGill Univ, Dept Biomed Engn, Montreal, PQ H3A 2B4, Canada
来源
基金
加拿大健康研究院;
关键词
bioadhesive; tissue repair; annulusfibrosus; hydrogel; biomechanical testing; IN-VIVO MEASUREMENTS; INTERVERTEBRAL DISC; FRACTURE-TOUGHNESS; MECHANICAL-PROPERTIES; BEHAVIOR; CLOSURE; DEGRADATION; DISKECTOMY; CARTILAGE; TISSUES;
D O I
10.1021/acsbiomaterials.4c00548
中图分类号
TB3 [工程材料学]; R318.08 [生物材料学];
学科分类号
0805 ; 080501 ; 080502 ;
摘要
Intervertebral disc (IVD) herniation is a leading cause of disability and lower back pain, causing enormous socioeconomic burdens. The standard of care for disc herniation is nucleotomy, which alleviates pain but does not repair the annulus fibrosus (AF) defect nor recover the biomechanical function of the disc. Existing bioadhesives for AF repair are limited by insufficient adhesion and significant mechanical and geometrical mismatch with the AF tissue, resulting in the recurrence of protrusion or detachment of bioadhesives. Here, we report a composite hydrogel sealant constructed from a composite of a three-dimensional (3D)-printed thermoplastic polyurethane (TPU) mesh and tough hydrogel. We tailored the fiber angle and volume fraction of the TPU mesh design to match the angle-ply structure and mechanical properties of native AF. Also, we proposed and tested three types of geometrical design of the composite hydrogel sealant to match the defect shape and size. Our results show that the sealant could mimic native AF in terms of the elastic modulus, flexural modulus, and fracture toughness and form strong adhesion with the human AF tissue. The bovine IVD tests show the effectiveness of the composite hydrogel sealant for AF repair and biomechanics recovery and for preventing herniation with its heightened stiffness and superior adhesion. By harnessing the combined capabilities of 3D printing and bioadhesives, these composite hydrogel sealants demonstrate promising potential for diverse applications in tissue repair and regeneration.
引用
收藏
页码:5094 / 5107
页数:14
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