首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Thermodynamics of micellization of beta-sheet forming poly(acrylic acid)-block-poly(l-valine) hybrids
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Thermodynamics of micellization of beta-sheet forming poly(acrylic acid)-block-poly(l-valine) hybrids

机译:形成β-折叠的聚丙烯酸-嵌段-聚1-缬氨酸杂化物胶束化的热力学

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摘要

The phase behavior and thermodynamic of micellization of three hybrid poly(acrylic acid)-block-poly(l-valine), namely PAA(40)-b-PLVAL(100), PAA(80)-b-PLVAL(100), and PAA(80)-b-PLVAL(80), were investigated. beta-sheet formation in these polymeric systems resulted in a dominant enthalpic micellization process that exhibited an upper critical solution temperature (UCST). Micelle dissociation at higher temperatures is attributed to the disruption of favorable hydrogen bonds in the micellar core. Separation of hydrogen bond contributions to the micellization thermodynamics through the addition of urea as an external denaturing agent, revealed a shift from a dominant enthalpic contribution of PLVAL segments at low degree of deprotonation (alpha), where significant beta-sheet is formed, to a balanced enthalpy and entropy contributions at high alpha, At high alpha, an enhanced "water cage" hydration of unimers was observed due to the formation of water-PLVAL hydrogen bonds. Hydrophobic forces played an indirect role in enhancing the compactness of the hydrophobic core, which enhanced the strength of hydrogen bonds in the beta-sheet structures.
机译:三种杂化聚(丙烯酸)-嵌段-聚(1-缬氨酸)(PAA(40)-b-PLVAL(100),PAA(80)-b-PLVAL(100))的胶束的相行为和热力学和PAA(80)-b-PLVAL(80)进行了研究。在这些聚合物系统中,β-折叠层的形成导致占主导的焓胶束化过程,该过程表现出较高的临界溶液温度(UCST)。在较高温度下胶束解离归因于胶束核心中有利的氢键的破坏。通过添加尿素作为外部变性剂,氢键对胶束热力学的贡献分离表明,PLVAL片段在低去质子化程度(α)(形成明显的β-折叠)从占主导地位的焓贡献转移到了在高α值时,焓和熵的贡献平衡。在高α值时,由于水-PLVAL氢键的形成,观察到单体的“水笼”水合增强。疏水力在增强疏水核的紧密度方面起间接作用,从而增强了β-折叠结构中氢键的强度。

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