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二元水混合溶液中某些尿素衍生物的非理想行为及其诱导溶菌酶凝胶化的能力。

Non-ideal behavior of binary aqueous mixtures of some urea derivatives and their capacity to induce lysozyme gelation.

机构信息

Instituto de Química, Universidade de São Paulo, Av. Prof. Lineu Prestes, 748, 05508-000 São Paulo, SP, Brazil.

Instituto de Química, Universidade de São Paulo, Av. Prof. Lineu Prestes, 748, 05508-000 São Paulo, SP, Brazil.

出版信息

J Colloid Interface Sci. 2017 Dec 1;507:190-199. doi: 10.1016/j.jcis.2017.07.107. Epub 2017 Jul 29.

Abstract

The urea derivatives, namely, ethylurea (EU), 1,3 dimethylurea (1,3-DMU) and 1,1 diethylurea (1,1-DEU), in the limiting regions of their solubilities in water, and tetramethylurea (TMU) at w≥0.65 were investigated in relation to their capacity of inducing hen egg white lysozyme (HEWL) physical (non-covalent) gelation. Protein transparent gels were generated out of TMU/HO and 1,1-DEU/HO, respectively, whereas an intensively turbid gel resulted from sol-gel transition taking place in EU/HO. Oscillatory rheology revealed distinctions in the gels' structural and dynamic characteristics. Hydration patterns of the derivatives in solution, sizes of their non-polar domains and supramolecular symmetry features played a central role in their capacity of gel formation and in the gels' rheological behavior and morphology. Effects on gel characteristics of distinctively positioned ions in the Hofmeister series showed that SCN disrupted water H-bonding interconnectivity in TMU lysozyme gel, strengthening gel structure, yet maintaining gel transparency. Citrate enhanced system elasticity albeit causing intense turbidity and leading to phase separation. Larger values of the storage modulus, G', were verified for gels generated from binary mixtures containing urea derivatives with higher dipole moments.

摘要

在水的极限溶解度区域内的尿素衍生物,即乙基脲(EU)、1,3-二甲基脲(1,3-DMU)和 1,1-二乙基脲(1,1-DEU),以及在 w≥0.65 时的四甲基脲(TMU),与它们诱导鸡卵清白溶菌酶(HEWL)物理(非共价)凝胶化的能力有关。TMU/HO 和 1,1-DEU/HO 分别生成蛋白质透明凝胶,而 EU/HO 则发生溶胶-凝胶转变,形成强烈混浊的凝胶。动态流变学揭示了凝胶结构和动态特性的区别。在溶液中,衍生物的水合模式、非极性区域的大小和超分子对称特征在其凝胶形成能力以及凝胶的流变行为和形态中起着核心作用。在霍夫迈斯特系列中具有不同位置的离子对凝胶特性的影响表明,SCN 破坏了 TMU 溶菌酶凝胶中水分子的氢键相互连接性,从而增强了凝胶结构,但保持了凝胶的透明度。柠檬酸盐增强了系统的弹性,尽管会导致强烈的混浊并导致相分离。从含有更高偶极矩的尿素衍生物的二元混合物中生成的凝胶,其存储模量 G'值更大。

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