División de Ciencias e Ingenierías, Universidad de Guanajuato, Lomas del Bosque 103, 37150, León, Mexico.
Division of Biomedical Engineering, School of Engineering, University of Glasgow, Glasgow, G12 8LT, UK.
Small. 2019 Oct;15(42):e1904136. doi: 10.1002/smll.201904136. Epub 2019 Aug 28.
Atomic force microscopy rheological measurements (Rheo-AFM) of the linear viscoelastic properties of single, charged colloids having a star-like architecture with a hard core and an extended, deformable double-stranded DNA (dsDNA) corona dispersed in aqueous saline solutions are reported. This is achieved by analyzing indentation and relaxation experiments performed on individual colloidal particles by means of a novel model-free Fourier transform method that allows a direct evaluation of the frequency-dependent linear viscoelastic moduli of the system under investigation. The method provides results that are consistent with those obtained via a conventional fitting procedure of the force-relaxation curves based on a modified Maxwell model. The outcomes show a pronounced softening of the dsDNA colloids, which is described by an exponential decay of both the Young's and the storage modulus as a function of the salt concentration within the dispersing medium. The strong softening is related to a critical reduction of the size of the dsDNA corona, down to ≈70% of its size in a salt-free solution. This can be correlated to significant topological changes of the dense star-like polyelectrolyte forming the corona, which are induced by variations in the density profile of the counterions. Similarly, a significant reduction of the stiffness is obtained by increasing the length of the dsDNA chains, which we attribute to a reduction of the DNA density in the outer region of the corona.
本文报道了在含有刚性核心和可变形双链 DNA(dsDNA)冠状物的单分散带电胶体的线性粘弹性的原子力显微镜流变学测量(Rheo-AFM)。这是通过对单个胶体颗粒进行压痕和弛豫实验,并使用一种新颖的无模型傅里叶变换方法进行分析来实现的,该方法允许直接评估所研究系统的频率相关线性粘弹性模量。该方法的结果与通过基于改进的 Maxwell 模型的力松弛曲线的常规拟合程序获得的结果一致。结果表明 dsDNA 胶体明显软化,其特征在于杨氏模量和储能模量随分散介质中盐浓度呈指数衰减。强烈的软化与 dsDNA 冠状物尺寸的临界减小有关,在无盐溶液中其尺寸减小到约 70%。这可以与形成冠状物的密集星型聚电解质的拓扑结构的显著变化相关联,这是由抗衡离子密度分布的变化引起的。同样,通过增加 dsDNA 链的长度也可以获得显著的刚度降低,我们将其归因于冠状物外区 DNA 密度的降低。