Cell Attachment and Proliferation on Poly(carbonate urethanes) with Various Degrees of Nanophase Separation
- 24 August 2004
- journal article
- research article
- Published by Wiley in Macromolecular Bioscience
- Vol. 4 (9), 891-900
- https://doi.org/10.1002/mabi.200400062
Abstract
Summary: In this work, we synthesized six 4,4′‐diphenylmethane diisocyanate (MDI)‐based poly(carbonate urethanes) (PCU) by using the macrodiol poly(1,6‐hexyl, 1,2‐ethyl carbonate) diol (MW = 2 017) in different molar ratios to MDI. The bulk and surface properties of cast PCU films were analyzed. The glass transition temperatures measured by dynamic mechanical analysis (DMA) and surface images obtained from atomic force microscopy (AFM) indicated that these PCU had various degrees of nanophase separation that changed with the time and film casting temperatures. The degree of nanophase separation correlated very well with endothelial cell attachment and proliferation on PCU. Phase image (left) and light micrograph (right) of a PCU. image Phase image (left) and light micrograph (right) of a PCU.This publication has 17 references indexed in Scilit:
- Rapid fibroblast adhesion to 27nm high polymer demixed nano-topographyBiomaterials, 2003
- Increasing Fibroblast Response to Materials Using Nanotopography: Morphological and Genetic Measurements of Cell Response to 13-nm-High Polymer Demixed IslandsExperimental Cell Research, 2002
- Modification of polycarbonate with miscible polyurethane elastomersPolymer, 1997
- Concentration dependence of crystallinity of polycarbonate by shock-cooling and subsequent freeze-drying of its various solutionsPolymer, 1996
- Structure and Adsorption Properties of FibrinogenPublished by American Chemical Society (ACS) ,1995
- Effect of hard segment chemistry and strain on the stability of polyurethanes: in vivo biostabilityBiomaterials, 1993
- Texturing of polymer surfaces at the cellular levelBiomaterials, 1991
- Radiofrequency plasma deposition of oxygen‐containing films on polystyrene and poly(ethylene terephthalate) substrates improves endothelial cell growthJournal of Biomedical Materials Research, 1990
- Surface properties and blood compatibility of polyurethaneureasBiomaterials, 1986
- Chemical and Mechanical Requirements for Fibroblast AdhesionNature, 1973