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Characterization of water in hydrated Bombyx mori silk fibroin fiber and films by H-2 NMR relaxation and C-13 solid state NMR

机译:H-2 NMR弛豫和C-13固态NMR水合Bombyx Mori丝纤维素纤维素纤维素纤维素纤维素纤维素纤维素纤维素和薄膜的特征

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摘要

The mechanical properties of Bombyx mori silk fibroin (SF), such as elasticity and tensile strength, change remarkably upon hydration. However, the microscopic interaction with water is not currently well understood on a molecular level. In this work, the dynamics of water molecules interacting with SF was studied by H-2 solution NMR relaxation and exchange measurements. Additionally, the conformations of hydrated [3-C-13]Ala-, [3-C-13]Ser-, and [3-C-13]Tyr-SF fibers and films were investigated by C-13 DD/MAS NMR. Using an inverse Laplace transform algorithm, we were able to identify four distinct components in the relaxation times for water in SF fiber. Namely, A: bulk water outside the fiber, B: water molecules trapped weakly on the surface of the fiber, C: bound water molecules located in the inner surface of the fiber, and D: bound water molecules located in the inner part of the fiber were distinguishable. In addition, four components were also observed for water in the SF film immersed in methanol for 30 s, while only two components for the film immersed in methanol for 24 h. The effects of hydration on the conformation of Ser and Tyr residues in the site-specific crystalline and non-crystalline domains of C-13 selectively labeled SF, respectively, could be determined independently. Our measurements provide new insight relating the characteristics of water and the hydration structure of silk, which are relevant in light of current interest in the design of novel silk-based biomaterials.
机译:Bombyx Mori丝素蛋白(SF)的机械性能,如弹性和拉伸强度,在水合时显着变化。然而,与水的微观相互作用目前没有很好地理解分子水平。在这项工作中,通过H-2溶液NMR弛豫和交换测量研究了与SF相互作用的水分子的动态。另外,通过C-13 DD / MAS NMR研究了水合[3-C-13] ALA-,[3-C-13] ALA-,[3-C-13] SER-,[3-C-13] TYR-SF纤维和薄膜的构象。使用逆拉普拉斯变换算法,我们能够在SF纤维中识别放松时间的四个不同的组分。即:A:纤维外的散装水,B:水分子钝化在纤维表面上,C:位于纤维内表面的C:与D:位于内部部分的D:所结合的水分子。纤维可区分。此外,还观察到四种组分在浸入甲醇中浸入30秒的SF膜中,而仅浸入甲醇中的薄膜中的两个组分24小时。可以独立地确定水合对C-13的基位特异性结晶和非结晶结构域中Ser和Tyr残留物的构象的影响,可以独立地确定。我们的测量提供了新的洞察力,与丝绸的水合结构有关,这是根据目前对新型丝绸生物材料设计的目的的影响。

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