首页 | 本学科首页   官方微博 | 高级检索  
     


A Theoretical Model for the Margination of Particles within Blood Vessels
Authors:P. Decuzzi  B. Bhushan  M. Ferrari
Affiliation:(1) Center of Excellence in Computational Mechanics, Politecnico di Bari, Bari, 70125, Italy;(2) Dorothy M. Davis Heart and Lung Research Institute The Ohio State University, Columbus, OH;(3) Nanotribology Laboratory for Information Storage and MEMS/NEMS, The Ohio State University, Columbus, OH, 43210-1107;(4) Center of Excellence in Computational Mechanics Poilitecnico di Bari, Bari, 70125, Italy
Abstract:
The margination of a particle circulating in the blood stream has been analyzed. The contribution of buoyancy, hemodynamic forces, van der Waals, electrostatic and steric interactions between the circulating particle and the endothelium lining the vasculature has been considered. For practical applications, the contribution of buoyancy, hemodynamic forces and van der Waals interactions should be only taken into account, whilst the effect of electrostatic and steric repulsion becomes important only at very short distances from the endothelium (1–10 nm). The margination speed and the time for margination ts have been estimated as a function of the density of the particle relative to blood Delta rgr, the Hamaker constant A and radius R of the particle. A critical radius Rc exists for which the margination time ts has a maximum, which is influenced by both Delta rgr and A: the critical radius decreases as the relative density increases and the Hamaker constant decreases. Therefore, particles used for drug delivery should have a radius smaller than the critical value (in the range of 100 nm) to facilitate margination and interaction with the endothelium. While particles used as nanoharvesting agents in proteomics or genomics analysis should have a radius close to the critical value to minimize margination and increase their circulation time.
Keywords:Drug delivery systems  Nanoharvesting agents  Non-specific interactions  Buoyancy  van der Waals  Electrostatic double layer
本文献已被 PubMed SpringerLink 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号