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Enzymatically Degradable Mussel-Inspired Adhesive Hydrogel

机译:可酶降解的贻贝启发式粘合剂水凝胶

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Mussel-inspired adhesive hydrogels represent innovative candidate medical sealants or glues. In the present work, we describe an enzyme-degradable mussel-inspired adhesive hydrogel formulation, achieved by incorporating minimal elastase substrate peptide Ala-Ala into the branched poly(ethylene glycol) (PEG) macromonomer structure. The system takes advantage of neutrophil elastase expression upregulation and secretion from neutrophils upon recruitment to wounded or inflamed tissue. By integrating adhesive degradation behaviors that respond to cellular cues, we expand the functional range of our mussel-inspired adhesive hydrogel platforms. Rapid (< 1 min) and simultaneous gelation and adhesion of the proteolytically active, catechol-terminated precursor macromonomer was achieved by addition of sodium periodate oxidant. Rheological analysis and equilibrium swelling studies demonstrated that the hydrogel is appropriate for soft tissue-contacting applications. Notably, hydrogel storage modulus (G') achieved values on the order of 10 kPa, and strain at failure exceeded 200% strain. Lap shear testing confirmed the material's adhesive behavior (shear strength: 30.4 ± 3.39 kPa). Although adhesive hydrogel degradation was not observed during short-term (27 h) in vitro treatment with neutrophil elastase, in vivo degradation proceeded over several months following dorsal subcutaneous implantation in mice. This work represents the first example of an enzymatically degradable mussel-inspired adhesive and expands the potential biomedical applications of this family of materials.
机译:受贻贝启发的粘性水凝胶代表了创新的候选医用密封胶或胶水。在目前的工作中,我们描述了一种酶可降解的贻贝启发性的粘合剂水凝胶制剂,该制剂是通过将最小的弹性蛋白酶底物肽Ala-Ala掺入支化的聚(乙二醇)(PEG)大分子单体结构中而实现的。该系统在募集到受伤或发炎的组织后利用嗜中性粒细胞弹性蛋白酶表达上调和从嗜中性粒细胞分泌。通过整合响应细胞线索的粘合剂降解行为,我们扩大了贻贝类粘合剂水凝胶平台的功能范围。通过添加高碘酸钠氧化剂,可以快速(<1分钟)同时发生蛋白水解活性,邻苯二酚封端的前体大分子单体的胶凝和粘附。流变学分析和平衡溶胀研究表明,水凝胶适用于软组织接触应用。值得注意的是,水凝胶储能模量(G')达到约10 kPa的值,破坏时的应变超过200%应变。搭接剪切测试证实了该材料的粘合性能(剪切强度:30.4±3.39 kPa)。尽管在短期(27 h)中性粒细胞弹性蛋白酶体外治疗中未观察到粘附性水凝胶降解,但在小鼠背侧皮下植入后的几个月内,体内降解仍在进行。这项工作代表了可酶降解的贻贝类胶粘剂的第一个实例,并扩展了该系列材料的潜在生物医学应用。

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