高强度骨聚氨酯粘合剂,可快速固化,用于骨组织损伤修复。

Xuehua Zhao, Jinju Ding, Chengkai Xuan, Jianing Liao, Xuetao Shi
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引用次数: 0

摘要

骨组织粘合剂具有防止应力屏蔽和二次手术感染、固定小块骨片、简化手术和提高伤口适应性等优点。这些方法可用于粉碎性骨折的创伤修复。目前,商业组织粘合剂无法满足骨组织粘合剂的生物安全性和机械强度要求。针对这种情况,我们开发并筛选出一种快速固化的高强度聚氨酯骨粘合剂。研究表明,聚氨酯骨粘合剂具有更短的固化时间(236 秒至 273 秒)、更高的拉伸模量(425.88 兆帕至 666.38 兆帕)、压缩模量(214.67 兆帕至 450.66 兆帕)和粘合强度(0.92 兆帕至 5.86 兆帕)。它可以承受 0.01 兆帕至 1 兆帕的循环应力,循环 1000 次。聚氨酯骨粘合剂超越了现有商用骨水泥粘合性能和体内修复功能的不足,实现了对骨组织损伤的有效修复。此外,我们还开发了一种基于迈克尔加成反应的不饱和酯改性仲胺固化剂,使聚氨酯骨粘合剂能够快速安全地固化,从而为骨组织损伤提供了一种新颖有效的修复方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High-strength bone polyurethane adhesive with rapid curing for bone tissue injury repair.

Bone tissue adhesives have advantages such as preventing stress shielding and secondary surgical infections, fixing small bone fragments, easing operations, and enhancing wound adaptability. These methods can be applied for the traumatic repair of comminuted fractures. Currently, commercial tissue adhesives fail to meet the biological safety and mechanical strength requirements of bone tissue adhesives. To address this situation, we developed and screened a rapidly cured high-strength polyurethane bone adhesive. Research has shown that polyurethane bone adhesives have shorter curing times (236 s to 273 s), higher tensile moduli (425.88 MPa to 666.38 MPa), compressive moduli (214.67 MPa to 450.66 MPa), and adhesive strengths (0.92 MPa to 5.86 MPa). It can withstand cyclic stresses ranging from 0.01 MPa to 1 MPa for 1000 cycles. Polyurethane bone adhesive surpasses the inadequate adhesive performance and in vivo repair functionality of existing commercial bone cements, achieving effective repair of bone tissue injuries. Furthermore, we developed an unsaturated ester-modified secondary amine curing agent based on the Michael addition reaction, enabling rapid and safe curing of bone polyurethane adhesives and thereby providing a novel and effective repair solution for bone tissue injuries.

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来源期刊
Journal of materials chemistry. B
Journal of materials chemistry. B 化学科学, 工程与材料, 生命科学, 分析化学, 高分子组装与超分子结构, 高分子科学, 免疫生物学, 免疫学, 生化分析及生物传感, 组织工程学, 生物力学与组织工程学, 资源循环科学, 冶金与矿业, 生物医用高分子材料, 有机高分子材料, 金属材料的制备科学与跨学科应用基础, 金属材料, 样品前处理方法与技术, 有机分子功能材料化学, 有机化学
CiteScore
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