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Mechanical Properties and Failure Analysis of Visible Light Crosslinked Alginate-Based Tissue Sealants

机译:可见光交联藻酸盐基组织密封剂的力学性能和失效分析

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摘要

Moderate to weak mechanical properties limit the use of naturally-derived tissue sealants for dynamic medical applications, e.g., sealing a lung leak. To overcome these limitations, we developed visible-light crosslinked alginate-based hydrogels, as either non-adhesive methacrylated alginate (Alg-MA) hydrogel controls, or oxidized Alg-MA (Alg-MA-Ox) tissue adhesive tissue sealants, which form covalent bonds with extracellular matrix (ECM) proteins. Our study investigated the potential for visible-light crosslinked Alg-MA-Ox hydrogels to serve as effective surgical tissue sealants for dynamic in vivo systems. The Alg-MA-Ox hydrogels were designed to be an injectable system, curable in situ. Burst pressure experiments were conducted on a custom-fabricated burst pressure device using constant air flow; burst pressure properties and adhesion characteristics correlated with the degrees of methacrylation and oxidation. In summary, visible light crosslinked Alg-MA-Ox hydrogel tissue sealants form effective seals over critically-sized defects, and maintain pressures up to 50 mm Hg.
机译:中等至弱的机械性能限制了将天然来源的组织密封剂用于动态医疗应用,例如,密封肺部渗漏。为了克服这些限制,我们开发了可见光交联的藻酸盐基水凝胶,作为非粘性的甲基丙烯酸藻酸盐(Alg-MA)水凝胶对照或氧化的Alg-MA(Alg-MA-Ox)组织粘合剂组织密封剂,形成了与细胞外基质(ECM)蛋白共价键。我们的研究调查了可见光交联的Alg-MA-Ox水凝胶作为动态体内系统的有效外科手术组织密封剂的潜力。 Alg-MA-Ox水凝胶被设计为可现场固化的可注射系统。爆破压力实验是在定制的爆破压力设备上使用恒定气流进行的;爆裂压力特性和粘附特性与甲基丙烯酸化和氧化程度相关。总而言之,可见光交联的Alg-MA-Ox水凝胶组织密封剂可对临界尺寸的缺陷形成有效的密封,并维持高达50 mm Hg的压力。

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