New quantitative approach to analyze capillary permeability data that combines junctional pores and a fiber layer at the cleft entrance

Ruey Yug Tsay*, Fitz Roy E. Curry, Sheldon Weinbaum

*此作品的通信作者

研究成果: Conference contribution同行評審

摘要

A three dimensional junction-pore-matrix model is applied to examine the role of the intercellular junction and matrix structures in the regulation of capillary permeability. In this studies a new hydrodynamic theory has been developed to examine the effect of a thin fiber layer at the entrance of the cleft. The fiber matrix structure is represented by either a perpendicular array of cylindrical posts or a porous medium with parallel channels running perpendicular to the lumen front at the entrance of the cleft. Our results indicate that a cleft with large junctional gaps of 22×44 nm and gap spacing of 480 nm and a fiber matrix with open spacing Δ ≈ 7nm can fit the measured values for solute permeability for small ions and large molecules of the size close to albumin and the values for hydraulic conductivities with and without a surface fiber layer present. However, it can not also fit the measured values of solute permeability for the intermediate size solutes. Therefore, it is clear that by considering the hydrodynamic forces alone, a cleft with uniform size junctional pores and a fiber matrix layer does not offer enough diffusive resistance for the intermediate size solutes.

原文English
主出版物標題Advances in Biological Heat and Mass Transfer
發行者Publ by ASME
頁面43-49
頁數7
ISBN(列印)0791808785
出版狀態Published - 1991
事件Winter Annual Meeting of the American Society of Mechanical Engineers - Atlanta, GA, USA
持續時間: 1 12月 19916 12月 1991

出版系列

名字American Society of Mechanical Engineers, Heat Transfer Division, (Publication) HTD
189
ISSN(列印)0272-5673

Conference

ConferenceWinter Annual Meeting of the American Society of Mechanical Engineers
城市Atlanta, GA, USA
期間1/12/916/12/91

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