Stradner Anna, Sedgwick Helen, Cardinaux Frédéric, Poon Wilson C K, Egelhaaf Stefan U, Schurtenberger Peter
Department of Physics, University of Fribourg, Chemin du Musée 3, CH-1700 Fribourg, Switzerland.
Nature. 2004 Nov 25;432(7016):492-5. doi: 10.1038/nature03109.
Controlling interparticle interactions, aggregation and cluster formation is of central importance in a number of areas, ranging from cluster formation in various disease processes to protein crystallography and the production of photonic crystals. Recent developments in the description of the interaction of colloidal particles with short-range attractive potentials have led to interesting findings including metastable liquid-liquid phase separation and the formation of dynamically arrested states (such as the existence of attractive and repulsive glasses, and transient gels). The emerging glass paradigm has been successfully applied to complex soft-matter systems, such as colloid-polymer systems and concentrated protein solutions. However, intriguing problems like the frequent occurrence of cluster phases remain. Here we report small-angle scattering and confocal microscopy investigations of two model systems: protein solutions and colloid-polymer mixtures. We demonstrate that in both systems, a combination of short-range attraction and long-range repulsion results in the formation of small equilibrium clusters. We discuss the relevance of this finding for nucleation processes during protein crystallization, protein or DNA self-assembly and the previously observed formation of cluster and gel phases in colloidal suspensions.
控制粒子间相互作用、聚集和团簇形成在许多领域都至关重要,从各种疾病过程中的团簇形成到蛋白质晶体学以及光子晶体的生产。胶体粒子与短程吸引势相互作用描述方面的最新进展带来了有趣的发现,包括亚稳态液 - 液相分离以及动态停滞状态的形成(如吸引性和排斥性玻璃态以及瞬态凝胶的存在)。新兴的玻璃范式已成功应用于复杂的软物质系统,如胶体 - 聚合物系统和浓缩蛋白质溶液。然而,诸如团簇相频繁出现等有趣问题仍然存在。在此,我们报告了对两个模型系统的小角散射和共聚焦显微镜研究:蛋白质溶液和胶体 - 聚合物混合物。我们证明,在这两个系统中,短程吸引和长程排斥的组合导致形成小的平衡团簇。我们讨论了这一发现与蛋白质结晶、蛋白质或DNA自组装过程中的成核过程以及先前在胶体悬浮液中观察到的团簇和凝胶相形成的相关性。