Asymmetric membrane filters for the removal of leukocytes from blood
- 1 December 1991
- journal article
- research article
- Published by Wiley in Journal of Biomedical Materials Research
- Vol. 25 (12) , 1459-1480
- https://doi.org/10.1002/jbm.820251205
Abstract
As part of a study on the mechanisms of leukocyte filtration, the influence of pore size distribution on filter efficiency was investigated. Conventional leukocyte filters are not suitable for model studies, as these filters are composed of tightly packed synthetic fibers, with a poorly defined porous structure. Therefore, open cellular polyurethane membranes with pore size distributions varying from approximately 15 to 65 μm were prepared. Filtration experiments with stacked packages of these membranes showed that leukocytes are best removed (>99%) by filters with a pore size distribution of 11–19 μm. These pore sizes approach the size of leukocytes (6–12 μm). However, due to fast clogging, blood flow through these filters is rapidly reduced, which results in a low filter capacity. With an asymmetric membrane filter, in which the pore size decreases from about 65 to 15 μm in the direction of blood flow, both moderate removal of leukocytes (>80%) and maintenance of flow (∼0.2 mL/s) are obtained. This results in efficient leukocyte removal. From cell analysis of both filtrate and filter, it is concluded that adhesion rather than sieving is the major filtration mechanism. Thus, further optimization of the filter may be achieved by surface modification.Keywords
This publication has 50 references indexed in Scilit:
- Prevention of primary cytomegalovirus infection in patients with hematologic malignancies by intensive white cell depletion of blood productsTransfusion, 1989
- Modifizierung von polymeroberflächen zur erhöhung der zelladhäusionDie Angewandte Makromolekulare Chemie, 1989
- An Objective Characterization of the Cell Size of Microcellular FoamsJournal of Cellular Plastics, 1988
- Use of leucocyte‐poor blood components and HLA‐matched‐platelet donors to prevent HLA alloimmunizationBritish Journal of Haematology, 1986
- LETTERS TO THE EDITORAIDS Research, 1986
- Reversibility of granulocyte adhesion using polyamine-grafted nylon-6 as a new column substrate for granulocyte separationBiomaterials, 1985
- Preparation of Granulocyte‐Poor Red Blood Cells by Microaggregate FiltrationVox Sanguinis, 1980
- THERMODYNAMIC STUDIES OF CELLULAR ADHESIONAsaio Journal, 1979
- Nonhemolytic Febrile Transfusion ReactionsVox Sanguinis, 1966
- Separation of Lymphocytes from Human BloodActa Haematologica, 1966