journal article Jun 22, 2006

HEMA‐grafted chitosan for dialysis membrane applications

Journal of Applied Polymer Science Vol. 101 No. 5 pp. 2960-2966 · Wiley
View at Publisher Save 10.1002/app.23525
Abstract
AbstractChitosan was graft copolymerized with HEMA (2‐Hydroxyethylmethacrylate) for the development of blood‐compatible dialysis membranes. The permeation characteristics of HEMA‐grafted chitosan films for four different solutes creatinine, urea, glucose, and albumin was studied in vitro at 37°C for assessment of the suitability as dialysis membranes. The grafted film CH‐12.5 composition (425% grafting) showed very high permeation to creatinine by reaching the equilibrium within 45 min. The compositions CH‐7.5 and CH‐12.5 showed excellent permeation to glucose when compared to virgin chitosan films. In the case of urea permeation, all the grafted compositions exhibited higher percent permeation than the virgin chitosan films. The copolymer films CH‐7.5 and CH‐12.5 showed enhanced permeability for the high molecular weight solute, albumin. The other grafted copolymer compositions followed almost the same trend as that of chitosan for the low molecular weight solutes as well as the high molecular weight solute. The copolymer films were also found to be highly blood compatible, noncytotoxic, and biodegradable. Hence, the need for developing blood‐compatible chitosan membranes with desirable permeability properties is achieved by the graft copolymerization of HEMA onto chitosan. © 2006 Wiley Periodicals, Inc. J Appl Polym Sci 101: 2960–2966, 2006
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Metrics
12
Citations
18
References
Details
Published
Jun 22, 2006
Vol/Issue
101(5)
Pages
2960-2966
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Cite This Article
C. Radhakumary, Prabha D. Nair, Suresh Mathew, et al. (2006). HEMA‐grafted chitosan for dialysis membrane applications. Journal of Applied Polymer Science, 101(5), 2960-2966. https://doi.org/10.1002/app.23525
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