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Self-Assembly and Adhesion of DOPA-Modified Methacrylic Triblock Hydrogels

机译:DOPA修饰的甲基丙烯酸三嵌段水凝胶的自组装和粘合

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Marine mussels anchor to a variety of surfaces by secreting liquid proteins that harden and form water-resistant bonds to a variety of surfaces.Studies have revealed that these mussel adhesive proteins contain an unusual amino acid,3,4-dihydroxy-L-phenylalanine(DOPA),which is believed to be responsible for the cohesive and adhesive properties of these proteins.To separate the cohesive and adhesive roles of DOPA,we incorporated DOPA into the midblock of poly(methyl methacrylate)-poly(methacrylic acid)-poly(methyl methacrylate)(PMMA-PMAA-PMMA)triblock copolymers.Self-assembled hydrogels were obtained by exposing triblock copolymer solutions in dimethyl sulfoxide to water vapor.As water diffused into the solution,the hydrophobic end blocks formed aggregates that were bridged by the water-soluble midblocks.Strong hydrogels were formed with polymer weight fractions between 0.01 and 0.4 and with shear moduli between 1 and 5 kPa.The adhesive properties of the hydrogels on TiO2 surfaces were investigated by indentation with a flat-ended cylindrical punch.At pH values of 6 and 7.4,the fully protonated DOPA groups were highly adhesive to the TiO2 surfaces,giving values of ≈2 J/m~2 for the interfacial fracture energy,which we believe corresponds to the cohesive fracture energy of the hydrogel.At these pH values,the DOPA groups are hydrophobic and have a tendency to aggregate,so contact times of 10 or 20 min are required for these high values of the interfacial strength to be observed.At a pH of 10,the DOPA groups were hydrophilic and highly swellable,but less adhesive gels were formed.Oxidation of DOPA groups,a process that is greatly accelerated at a pH of 10,decreased the adhesive performance of the hydrogels even further.
机译:海洋贻贝通过分泌液态蛋白质而锚定在各种表面上,这些蛋白质会硬化并在各种表面上形成防水键。研究表明,这些贻贝粘附蛋白含有不寻常的氨基酸3,4-二羟基-L-苯丙氨酸( (DOPA),据信这是这些蛋白质的内聚和粘附特性的原因。为了分开DOPA的内聚和粘附作用,我们将DOPA掺入了聚(甲基丙烯酸甲酯)-聚(甲基丙烯酸)-聚(甲基丙烯酸甲酯)(PMMA-PMAA-PMMA)三嵌段共聚物。通过将三嵌段共聚物在二甲亚砜中的溶液暴露于水蒸气中获得自组装水凝胶。当水扩散到溶液中时,疏水端嵌段形成聚集体,这些聚集体被水桥接可溶的中间嵌段。形成的水凝胶具有高的聚合物重量比,介于0.01和0.4之间,剪切模量介于1和5 kPa之间。通过平端圆柱冲头的压痕进行研究。在pH值为6和7.4时,完全质子化的DOPA基团对TiO2表面具有高度粘附性,界面断裂能的值约为≈2 J / m〜2,因此在这些pH值下,DOPA基团具有疏水性并易于聚集,因此要观察到这些高界面强度,需要10或20分钟的接触时间。在10的pH值下,DOPA基团是亲水性和高度溶胀的,但形成的粘合凝胶较少。在10的pH值下,DOPA基团的氧化过程大大加速,这进一步降低了水凝胶的粘合性能。

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