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Rapidly Cross-Linkable DOPA Containing Terpolymer Adhesives and PEG-Based Cross-Linkers for Biomedical Applications

机译:含有三元共聚物粘合剂和基于PEG的交联剂的快速交联的多脂用于生物医学应用

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摘要

A new three-component bio-inspired adhesive was synthesized that is a terpolymer composed of a water-soluble segment, an interfacial adhesion segment, and a cross-linking segment. Strong wet adhesion properties are obtained utilizing a 3,4-dihydroxy-l-phenylalanine (DOPA) moiety. Poly(acrylic acid) provides high water solubility due to strong ionic interactions with water. An acrylic acid N-hydroxysuccinimide ester (NHS) was included in the adhesive polymer to allow rapid cross-linking with thiol-terminated, 3-armed poly(ethylene glycol) cross-linking agents. The thiol terminal poly(ethylene glycol) was designed to be bulky to avoid possible penetration of molecules to the cell and tissue. The NHS and thiol groups react within 30 s to form covalent bonds. This design allows for rapid optimization of properties for specific applications. Lap shear strength tests on wet porcine skin demonstrated a 190% increased value in adhesion strength for adhesives having the DOPA moiety. After cross-linking, adhesion was enhanced by 450% over poly(acrylic acid-co-acrylic acid NHS) and was 240% higher than un-cross-linked poly(acrylic acid-co-acrylic acid NHS-co-N-methacryloyl-3,4-dihydroxyl-l-phenylalanine). Rheology studies show adhesive viscosity drops significantly at high shear rates, demonstrating its potential to be injected via syringe. The cross-linked adhesive displayed much stronger mechanical properties and higher elastic and viscous moduli than an un-cross-linked adhesive model. Furthermore, the cross-linked adhesive has enhanced moduli near body temperature (38 °C) as compared to room temperature (23 °C), increasing the applications as a biomedical adhesive.
机译:合成了一种新型的三组分生物启发型粘合剂,该粘合剂是由水溶性链段,界面粘合链段和交联链段组成的三元共聚物。利用3,4-二羟基-1-苯丙氨酸(DOPA)部分获得强的湿粘合性。由于与水的强离子相互作用,聚丙烯酸具有很高的水溶性。丙烯酸N-羟基琥珀酰亚胺酯(NHS)被包含在粘合剂聚合物中,以允许与巯基封端的三臂聚乙二醇交联剂快速交联。巯基末端的聚乙二醇被设计成笨重的,以避免分子可能渗透到细胞和组织中。 NHS和硫醇基团在30秒内反应形成共价键。这种设计可以快速优化特定应用程序的属性。在湿猪皮肤上的搭接剪切强度测试表明,具有DOPA部分的粘合剂的粘合强度值增加了190%。交联后,与聚(丙烯酸-共丙烯酸NHS)的粘合力提高了450%,比未交联的聚(丙烯酸-共丙烯酸NHS-co-N-甲基丙烯酰基)的粘合力高240% -3,4-二羟基-1-苯基丙氨酸)。流变学研究表明,在高剪切速率下,粘合剂粘度会显着下降,这表明其可以通过注射器注射的潜力。交联的胶粘剂比未交联的胶粘剂模型具有更强的机械性能以及更高的弹性和粘弹性模量。此外,与室温(23℃)相比,该交联粘合剂在人体温度(38℃)附近具有增强的模量,从而增加了作为生物医学粘合剂的应用。

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