Speckner Konstantin, Weiss Matthias
Experimental Physics I, University of Bayreuth, Universitätsstr. 30, D-95447 Bayreuth, Germany.
Entropy (Basel). 2021 Jul 13;23(7):892. doi: 10.3390/e23070892.
Single-particle tracking (SPT) has become a powerful tool to quantify transport phenomena in complex media with unprecedented detail. Based on the reconstruction of individual trajectories, a wealth of informative measures become available for each particle, allowing for a detailed comparison with theoretical predictions. While SPT has been used frequently to explore diffusive transport in artificial fluids and inside living cells, intermediate systems, i.e., biochemically active cell extracts, have been studied only sparsely. Extracts derived from the eggs of the clawfrog , for example, are known for their ability to support and mimic vital processes of cells, emphasizing the need to explore also the transport phenomena of nano-sized particles in such extracts. Here, we have performed extensive SPT on beads with 20 nm radius in native and chemically treated Xenopus extracts. By analyzing a variety of distinct measures, we show that these beads feature an anti-persistent subdiffusion that is consistent with fractional Brownian motion. Chemical treatments did not grossly alter this finding, suggesting that the high degree of macromolecular crowding in Xenopus extracts equips the fluid with a viscoelastic modulus, hence enforcing particles to perform random walks with a significant anti-persistent memory kernel.
单粒子追踪(SPT)已成为一种强大的工具,能够以前所未有的细节量化复杂介质中的输运现象。基于对单个轨迹的重构,每个粒子都可获得大量信息丰富的测量值,从而能够与理论预测进行详细比较。虽然SPT已被频繁用于探索人工流体和活细胞内的扩散输运,但对于中间系统,即具有生物化学活性的细胞提取物,相关研究却很少。例如,爪蟾卵提取物以其支持和模拟细胞重要过程的能力而闻名,这凸显了研究纳米级颗粒在此类提取物中输运现象的必要性。在此,我们对半径为20 nm的珠子在天然和化学处理的非洲爪蟾提取物中进行了广泛的SPT研究。通过分析各种不同的测量值,我们发现这些珠子呈现出与分数布朗运动一致的反持久亚扩散特性。化学处理并未显著改变这一结果,这表明非洲爪蟾提取物中高度的大分子拥挤赋予了流体粘弹性模量,从而迫使粒子进行具有显著反持久记忆核的随机游走。