2009
DOI: 10.1016/j.ejpb.2009.08.003
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Influence of degree of substitution of HES–HEMA on the release of incorporated drug models from corresponding hydrogels

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Cited by 17 publications
(16 citation statements)
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“…HES-P(EG) 6 MA and HES-MA microparticles were prepared according to the following general procedure by a water-in-water emulsion process [8,10]: aqueous solutions (PBS) of HES-P(EG) 6 MA or HES-MA (2 wt%, 9 g), the photoinitator Irgacure ® 2959 (0.1 wt%, 0.9 g) and FITC-IgG solution (65 µl containing 825.5 µg FITC-IgG) were filled in a 20 mL glass vial in the mentioned order. An aqueous solution (PBS) of PEG 12,000 (30 wt%, 6.0 g) was added.…”
Section: Preparation Of Hydrogel Microparticlesmentioning
confidence: 99%
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“…HES-P(EG) 6 MA and HES-MA microparticles were prepared according to the following general procedure by a water-in-water emulsion process [8,10]: aqueous solutions (PBS) of HES-P(EG) 6 MA or HES-MA (2 wt%, 9 g), the photoinitator Irgacure ® 2959 (0.1 wt%, 0.9 g) and FITC-IgG solution (65 µl containing 825.5 µg FITC-IgG) were filled in a 20 mL glass vial in the mentioned order. An aqueous solution (PBS) of PEG 12,000 (30 wt%, 6.0 g) was added.…”
Section: Preparation Of Hydrogel Microparticlesmentioning
confidence: 99%
“…Polymers were produced with various degree of substitution (DS) leading to variable network densities and consequently different release kinetics. In contrast to HES-based polymers derivatized with hydroxyethyl methacrylate (HES-HEMA) which show a limited water solubility [8], better properties were obtained for the new HES-based derivatives. Linkage of the methacrylate groups via polyethylene glycol spacers with 6 or 10 ethylenoxide units (HES-P(EG) 6 MA, HES-P(EG) 10 MA) increased the water solubility of the prepolymers.…”
Section: Introductionmentioning
confidence: 99%
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“…The presence of imidazole groups in route 2 comparative to unreacted hydroxylethyl (and hydroxyl) groups in route 1 may be the possible reason regarding the decreased solubility of resulting HESHEMA synthesized by route 2. Harling et al and Schwoerer et al 4,26 synthesized HESHEMA by route 1 and reactions were completed by stirring HEMACI and HES for 5 days at room temperature. Here in this study, after a series of optimization reactions of HEMACI and HES conducted at different temperature conditions, it was found that reactions executed at 80 ºC for 24 h (Scheme 1) gave almost same DS as reported by other researchers.…”
Section: Resultsmentioning
confidence: 99%