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首页> 外文期刊>European spine journal: official publication of the European Spine Society, the European Spinal Deformity Society, and the European Section of the Cervical Spine Research Society >Intervertebral disc needle puncture injury can be repaired using a gelatin–poly (γ-glutamic acid) hydrogel: an in vitro bovine biomechanical validation
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Intervertebral disc needle puncture injury can be repaired using a gelatin–poly (γ-glutamic acid) hydrogel: an in vitro bovine biomechanical validation

机译:椎间盘针刺穿损伤可以使用明胶 - 聚(γ-谷氨酸)水凝胶进行修复:体外牛生物力学验证

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Purpose The subtle impairments of the disc due to anular punctures may have an immediate effect on the functional integrity due to the altered intradiscal pressure, hence the subsequent catabolic degradation. This study evaluates functional restoration of needle puncture injured intervertebral discs with a newly developed injectable hydrogel using the quantitative discomanometry (QD) test. The proposed hydrogel is composed of gelatin and poly (γ-glutamic acid) (γ-PGA) and crosslinked with 1-(3-dimethylaminopropyl)-3-ethyl-carbodiimide hydrochloride (EDC). Methods Thirty-six bovine motion segments were distributed into six groups. Needle puncture injured discs were created in all discs except for those in the first group (intact). The second group included injured discs that received no treatment (injury). The remaining four groups included injured discs repaired with injected hydrogels fabricated with different polymer solutions and EDC concentrations including: gelatin/γ-PGA solution crosslinked with the EDC solution at a 10:1 and 40:1 ratio to form the GP/E(10:1) and GP/E(40:1) groups, respectively, and gelatin and γ-PGA solution crosslinked with the EDC solution at a 10:1 ratio to form the G/E(10:1) or P/E(10:1) groups. The QD tests were performed to evaluate disc integrity of all six groups. Results Among all hydrogel repair groups, the GP/E(10:1) group was found to have the highest leakage and saturate pressure and was the only group comparable to the intact one. Conclusions Restoration of disc integrity secondary to needle puncture injury can be achieved via the repair with the newly developed gelatin hydrogel incorporated with γ-PGA and EDC. Graphical abstract These slides can be retrieved under Electronic Supplementary Material.
机译:目的,由于朝鲜刺破,圆盘的微妙损伤可能因阴道内压力改变而导致功能完整性立即影响功能完整性,因此随后的分解代谢降解。本研究评估了使用定量的离心水凝胶进行针刺穿刺受伤的椎间盘的功能恢复,使用定量的载体测定法(QD)试验。所提出的水凝胶由明胶和聚(γ-谷氨酸)(γ-PGA)组成,并与1-(3-二甲基氨基丙基)-3-乙基 - 碳二亚胺盐酸盐(EDC)交联。方法将三十六种牛运动区段分为六组。除了第一个组中的所有光盘中,在所有光盘中创建了针刺损伤的光盘(完整)。第二组包括没有治疗(伤害)的受伤盘。剩下的四组包括用不同聚合物溶液和EDC浓度制造的注射水凝胶修复的受损光盘,包括:在10:1和40:1的EDC溶液中与EDC溶液交联的明胶/γ-PGA溶液,以形成GP / E(10 :1)和GP / E(40:1)基团和明胶和γ-PGA溶液在10:1的比例下与EDC溶液交联,以形成G / E(10:1)或p / E( 10:1)组。进行QD测试以评估所有六组的光盘完整性。结果在所有水凝胶修复基团中,发现GP / E(10:1)组具有最高的泄漏和饱和压力,并且是唯一与完整的组。结论可以通过修复与γ-PGA和EDC的新开发的明胶水凝胶修复来实现次级针刺损伤的椎间盘完整性的恢复。图形摘要这些幻灯片可以在电子补充材料下检索。

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