Construction of cell‐compatible layer and culture of human umbilical vascular endothelial cells on porous polystyrene membranes
- 17 July 2001
- journal article
- research article
- Published by Wiley in Journal of Applied Polymer Science
- Vol. 81 (14) , 3523-3529
- https://doi.org/10.1002/app.1808
Abstract
Porous polystyrene (PS) membranes with pore sizes ranged from nanometer scale to several decades' micrometers were fabricated by the thermally induced phase‐separation technique, and were characterized by scanning electron microscopy (SEM). Oxidation of PS membranes by concentrated sulfuric acid induced a decrease of the carbon amount on the membrane surfaces accompanying with an increase of the oxygen amount. The hydrophilic surfaces thus constructed proved quite effective to promote endothelial cell adhesion and growth. After culturing for 4 days, a confluent endothelial cells (ECs) layer was observed on nonporous PS membrane treated previously with sulfuric acid for 15 min at 28.5°C. The observation under SEM showed that ECs on the PS membrane surfaces at the fourth day were inversely proportional to the pore size: the smaller the pore size, the larger the amount of ECs on the membrane surfaces. It is supposed that the existence of pores on the membrane surface might generate some disadvantageous resistance to the spreading of cells. © 2001 John Wiley & Sons, Inc. J Appl Polym Sci 81: 3523–3529, 2001Keywords
This publication has 18 references indexed in Scilit:
- Factors controlling surface morphology of porous polystyrene membranes prepared by thermally induced phase separationPolymer International, 2000
- Endothelial Cell Behavior on Vascular Prosthetic GraftsAsaio Journal, 1999
- Tissue EngineeringScience, 1993
- Surface Micromorphology and Cellular InteractionsJournal of Biomaterials Applications, 1993
- Cell adhesion and growth on polymer surfaces with hydroxyl groups prepared by water vapour plasma treatmentBiomaterials, 1991
- Culture of human vascular endothelial cells on a positively charged polystyrene surface, Primaria: comparison with fibronectin-coated tissue culture grade polystyreneBiomaterials, 1989
- Behaviour of fibroblast-like cells on grooved surfacesExperimental Cell Research, 1971
- Experiments on cell and axon orientation in vitro: The role of colloidal exudates in tissue organizationJournal of Experimental Zoology, 1945
- In vitro experiments on the factors determining the course of the outgrowing nerve fiberJournal of Experimental Zoology, 1934
- On the Stereotropism of Embryonic CellsScience, 1911