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Synergistic effects of metals and oxidants in the curing of marine mussel adhesive

机译:金属和氧化剂在船用贻贝胶固化中的协同作用

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摘要

Marine mussels produce an impressive adhesive material for affixing themselves to rocks in the turbulent marine environment. This glue is generated by application of proteins to the surface followed by extensive cross-linking to yield the final matrix. Prior studies have shown that simple oxidation or reactivity brought about by metal ions may be key to this protein cross-linking process. Here we have explored protein cross-linking reactivity in which combinations of metals and oxidants may display synergistic effects with respect to adhesive curing. Extracted adhesive proteins were mixed with a series of metals, oxidants, and combinations thereof. In some cases, synergistic curing was observed. For example, we found that iron(II) ions with hydrogen peroxide brought about a greater degree of protein cross-linking than the sum of the individual components. These studies were performed as part of our efforts to provide perspectives on the connections between biology, chemistry, and functional materials.
机译:海洋贻贝产生了一种令人印象深刻的粘合材料,可以在动荡的海洋环境中将自身固定在岩石上。这种胶水是通过将蛋白质应用到表面上,然后进行广泛的交联产生最终的基质而产生的。先前的研究表明,金属离子引起的简单氧化或反应性可能是该蛋白质交联过程的关键。在这里,我们探索了蛋白质交联反应性,其中金属和氧化剂的组合可能显示出相对于胶粘剂固化的协同效应。将提取的粘附蛋白与一系列金属,氧化剂及其组合混合。在某些情况下,观察到协同固化。例如,我们发现具有过氧化氢的铁(II)离子带来的蛋白质交联度高于各个成分的总和。这些研究是我们努力提供的有关生物学,化学和功能材料之间联系的观点的一部分。

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  • 来源
    《Journal of Materials Science》 |2007年第21期|8934-8942|共9页
  • 作者单位

    Department of Chemistry Purdue University West Lafayette IN 47907-2084 USA;

    Department of Chemistry Purdue University West Lafayette IN 47907-2084 USA;

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  • 正文语种 eng
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