NMR imaging of the diffusion of water at 310 K into semi-IPNs of PEM and poly(HEMA-co-THFMA) with and without chlorhexidine diacetate

Biomacromolecules
Mohammad A ChowdhuryM P Patel

Abstract

Magnetic resonance imaging has been used to monitor the diffusion of water at 310 K into a series of semi-IPNs of poly(ethyl methacrylate), PEM, and copolymers of 2-hydroxyethyl methacrylate, HEMA, and tetrahydrofurfuryl methacrylate, THFMA. The diffusion was found to be well described by a Fickian kinetic model in the early stages of the water sorption process, and the diffusion coefficients were found to be slightly smaller than those for the copolymers of HEMA and THFMA, P(HEMA-co-THFMA), containing the same mole fraction of HEMA in the matrix. A second stage sorption process was identified in the later stage of water sorption by the PEM/PTHFMA semi-IPN and for the systems containing a P(HEMA-co-THFMA) component with a mole fraction HEMA of 0.6 or less. This was characterized by the presence of water near the surface of the cylinders with a longer NMR T(2) relaxation time, which would be characteristic of mobile water, such as water present in large pores or surface fissures. The presence of the drug chlorhexidine in the polymer matrixes at a concentration of 5.625 wt % was found not to modify the properties significantly, but the diffusion coefficients for the water sorption were systematically smaller when the drug was pre...Continue Reading

References

Jan 1, 1987·Biomaterials·M P PatelK W Davy
Dec 24, 1998·Biomaterials·M P PatelM A Mirza
Apr 16, 1999·Biomaterials·P D RiggsM P Patel
Sep 7, 2004·Journal of Materials Science. Materials in Medicine·R M SawtellM Braden

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Citations

Jan 15, 2014·International Journal of Biological Macromolecules·Mohammad A Chowdhury
Jul 12, 2012·Progress in Nuclear Magnetic Resonance Spectroscopy·Igor V Koptyug
Mar 25, 2008·Biomacromolecules·Héloïse Thérien-AubinRobert H Marchessault

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