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Nanomechanics of Pectin-Linked beta-Lactoglobulin Nanofibril Bundles

机译:果胶连接β-乳酰叶蛋白纳米纤维束的纳米力学

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Nanofibrils of beta-lactoglobulin can be assembled into bundles by site-specific noncovalent cross-linking with high-methoxyl pectin (Hettiarachchi et al. Soft Matter 2016, 12, 756). Here we characterized the nanomechanical properties of bundles using atomic force microscopy and force spectroscopy. Bundles had Gaussian cross sections and a mean height of 17.4 +/- 1.4 nm. Persistence lengths were calculated using image analysis with the mean-squared end-to-end model. The relationship between the persistence length and the thickness had exponents of 1.69-2.30, which is consistent with previous reports for other fibril types. In spectroscopy experiments, the bundles stretched in a qualitatively different manner to fibrils, and some of the force curves were consistent with peeling fibrils away from bundles. The flexibility of pectin-linked nanofibril bundles is likely to be tunable by modulating the stiffness and length of fibrils and the ratio of pectin to fibrils, giving rise to a wide range of structures and functionalities.
机译:通过与高甲氧基果胶(Hettiarachchi等人软件2016,12,756)组装β-乳糖蛋白的纳米纤维可以组装成束。在这里,我们用原子力显微镜和力光谱表征了束的纳米机械特性。捆绑的具有高斯横截面和平均高度为17.4 +/- 1.4 nm。使用具有平均平均端到端模型的图像分析计算持久长度。持久性长度与厚度之间的关系具有1.69-2.30的指数,这与其他原纤维类型的先前报道一致。在光谱实验中,束以定性不同的方式向原纤维进行拉伸,并且一些力曲线与远离束的剥离原纤维一致。通过调节原纤维的刚度和长度和果胶与原纤维的比例,可能可调谐果胶连接的纳米纤维束的柔韧性,从而产生广泛的结构和功能。

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