Roldán-Vargas Sándalo, Martín-Molina Alberto, Quesada-Pérez Manuel, Barnadas-Rodríguez Ramon, Estelrich Joan, Callejas-Fernández José
Grupo de Física de Fluidos y Biocoloides, Departamento de Física Aplicada, Universidad de Granada, E-18071 Granada, Spain.
Phys Rev E Stat Nonlin Soft Matter Phys. 2007 Feb;75(2 Pt 1):021912. doi: 10.1103/PhysRevE.75.021912. Epub 2007 Feb 21.
In this work, the calcium-induced aggregation of phosphatidylserine liposomes is probed by means of the analysis of the kinetics of such process as well as the aggregate morphology. This novel characterization of liposome aggregation involves the use of static and dynamic light-scattering techniques to obtain kinetic exponents and fractal dimensions. For salt concentrations larger than 5mM, a diffusion-limited aggregation regime is observed and the Brownian kernel properly describes the time evolution of the diffusion coefficient. For slow kinetics, a slightly modified multiple contact kernel is required. In any case, a time evolution model based on the numerical resolution of Smoluchowski's equation is proposed in order to establish a theoretical description for the aggregating system. Such a model provides an alternative procedure to determine the dimerization constant, which might supply valuable information about interaction mechanisms between phospholipid vesicles.
在本研究中,通过分析磷脂酰丝氨酸脂质体钙诱导聚集过程的动力学以及聚集体形态,对该过程进行了探究。这种对脂质体聚集的新颖表征涉及使用静态和动态光散射技术来获取动力学指数和分形维数。对于盐浓度大于5mM的情况,观察到扩散限制聚集模式,并且布朗核能够恰当地描述扩散系数的时间演化。对于缓慢的动力学过程,则需要一个略微修改的多接触核。无论如何,为了建立聚集系统的理论描述,提出了一个基于斯莫卢霍夫斯基方程数值解的时间演化模型。这样一个模型提供了一种确定二聚化常数的替代方法,这可能会提供有关磷脂囊泡之间相互作用机制的有价值信息。