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Layer-by-layer polyelectrolyte deposition: a mechanism for forming biocomposite materials

机译:逐层聚电解质沉积:形成生物复合材料的机制

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摘要

Complex coacervates prepared from poly-Aspartic acid (polyAsp) and poly-L-Histidine (polyHis) were investigated as models of the metastable protein phases used in the formation of biological structures such as squid beak. When mixed, polyHis and polyAsp form coacervates whereas poly-L-Glutamic acid (polyGlu) forms precipitates with polyHis. Layer-by-layer (LbL) structures of polyHis-polyAsp on gold substrates were compared with those of precipitate-forming polyHis-polyGlu by monitoring with iSPR and QCM-D. PolyHis-polyAsp LbL was found to be stiffer than polyHis-polyGlu LbL with most water evicted from the structure but with sufficient interfacial water remaining for molecular rearrangement to occur. This thin layer is believed to be fluid and like preformed coacervate films, capable of spreading over both hydrophilic ethylene glycol as well as hydrophobic monolayers. These results suggest that coacervate-forming polyelectrolytes deserve consideration for potential LbL applications and point to LbL as an important process by which biological materials form.
机译:研究了由聚天冬氨酸(polyAsp)和聚L-组氨酸(polyHis)制备的复合凝聚层,作为在诸如鱿鱼喙等生物结构形成过程中使用的亚稳态蛋白质相的模型。当混合时,polyHis和polyAsp形成凝聚层,而poly-L-谷氨酸(polyGlu)与polyHis形成沉淀。通过iSPR和QCM-D监测,比较了金底物上的polyHis-polyAsp的逐层(LbL)结构与形成沉淀的polyHis-polyGlu的逐层结构。发现PolyHis-polyAsp LbL比polyHis-polyGlu LbL坚硬,大部分水从结构中排出,但保留了足够的界面水以进行分子重排。该薄层被认为是流体的,并且像预形成的凝聚层膜一样,能够在亲水性乙二醇以及疏水性单层上扩散。这些结果表明,形成凝聚层的聚电解质应考虑潜在的LbL应用,并指出LbL是生物材料形成的重要过程。

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