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Development of a fast curing tissue adhesive for meniscus tear repair

机译:开发用于半月板撕裂修复的快速固化组织粘合剂

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摘要

Isocyanate-terminated adhesive amphiphilic block copolymers are attractive materials to treat meniscus tears due to their tuneable mechanical properties and good adhesive characteristics. However, a drawback of this class of materials is their relatively long curing time. In this study, we evaluate the use of an amine cross-linker and addition of catalysts as two strategies to accelerate the curing rates of a recently developed biodegradable reactive isocyanate-terminated hyper-branched adhesive block copolymer prepared from polyethylene glycol (PEG), trimethylene carbonate, citric acid and hexamethylene diisocyanate. The curing kinetics of the hyper-branched adhesive alone and in combination with different concentrations of spermidine solutions, and after addition of 2,2-dimorpholinodiethylether (DMDEE) or 1,4-diazabicyclo [2.2.2] octane (DABCO) were determined using FTIR. Additionally, lap-shear adhesion tests using all compositions at various time points were performed. The two most promising compositions of the fast curing adhesives were evaluated in a meniscus bucket handle lesion model and their performance was compared with that of fibrin glue. The results showed that addition of both spermidine and catalysts to the adhesive copolymer can accelerate the curing rate and that firm adhesion can already be achieved after 2 h. The adhesive strength to meniscus tissue of 3.2–3.7 N was considerably higher for the newly developed compositions than for fibrin glue (0.3 N). The proposed combination of an adhesive component and a cross-linking component or catalyst is a promising way to accelerate curing rates of isocyanate-terminated tissue adhesives.
机译:异氰酸酯封端的两亲性嵌段共聚物因其可调节的机械性能和良好的粘合特性而成为治疗弯月面撕裂的诱人材料。但是,这类材料的缺点是它们的固化时间相对较长。在这项研究中,我们评估了使用胺交联剂和添加催化剂作为两种策略来提高由聚乙二醇(PEG),三亚甲基二醇制备的最近开发的可生物降解的反应性异氰酸酯封端的超支化粘合剂嵌段共聚物的两种策略。碳酸盐,柠檬酸和六亚甲基二异氰酸酯。使用以下方法测定单独使用的超支化粘合剂的固化动力学,以及与不同浓度的亚精胺溶液组合使用,以及添加2,2-二吗啉二乙醚(DMDEE)或1,4-二氮杂双环[2.2.2]辛烷(DABCO)后的固化动力学。 FTIR。另外,在不同时间点使用所有组合物进行搭接剪切粘合力测试。在弯月面桶手柄病变模型中评估了两种最有希望的快速固化胶粘剂组合物,并将其性能与纤维蛋白胶进行了比较。结果表明,在粘合剂共聚物中同时添加亚精胺和催化剂可以加快固化速度,并且在2小时后已经可以实现牢固的粘合。新开发的组合物对半月板组织的粘合强度为3.2–3.7 N,远远高于纤维蛋白胶(0.3 N)。粘合剂组分和交联组分或催化剂的所提出的组合是加速异氰酸酯封端的组织粘合剂的固化速率的有前途的方式。

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