Department of Chemistry, College of Sciences, Persian Gulf University, Boushehr 75168, Iran.
Eduard-Zintl-Institut für Anorganische und Physikalische Chemie, Technische Universität Darmstadt, Alarich-Weiss-Str. 8, 64287 Darmstadt, Germany.
J R Soc Interface. 2022 Sep;19(194):20220372. doi: 10.1098/rsif.2022.0372. Epub 2022 Sep 21.
Grand canonical ensemble molecular dynamics simulations are done to calculate the water content of gecko β-keratin as a function of relative humidity (RH). For comparison, we experimentally measured the water uptake of scales of the skin of cobra . The calculated sigmoidal sorption isotherm is in good agreement with experiment. To examine the softening effect of water on gecko keratin, we have calculated the mechanical properties of dry and wet keratin samples, and we have established relations between the mechanical properties and the RH. We found that a higher RH causes a decrease in the Young's modulus, the yield stress, the yield strain, the stress at failure and an increase in the strain at failure of the gecko keratin. At low RHs (less than 80%), the change in the mechanical properties is small, with most of the changes occurring at higher RHs. The changes in the macroscopic properties of the keratin are explained by the action of sorbed water on the molecular scale. It causes keratin to swell, thereby increasing the distances between amino acids. This has a weakening effect on amino acid interactions and softens the keratin material. The effect is more pronounced at higher RHs.
我们使用巨正则系综分子动力学模拟来计算壁虎 β-角蛋白的含水量作为相对湿度 (RH) 的函数。为了进行比较,我们还实验测量了眼镜蛇皮肤鳞片的吸水率。计算得到的 S 型吸附等温线与实验结果吻合良好。为了研究水分对角蛋白的软化作用,我们计算了干燥和湿润角蛋白样品的力学性能,并建立了力学性能与 RH 之间的关系。我们发现,较高的 RH 会导致壁虎角蛋白的杨氏模量、屈服应力、屈服应变、破坏应力降低,破坏应变增加。在较低的 RH 下(小于 80%),力学性能的变化较小,大部分变化发生在较高的 RH 下。角蛋白宏观性质的变化可以用吸附水在分子尺度上的作用来解释。它使角蛋白膨胀,从而增加了氨基酸之间的距离。这对角氨酸相互作用产生了削弱作用,使角蛋白材料变软。在较高的 RH 下,这种作用更为明显。