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The RC/β-CD scaffolds prepared by water-insoluble leaching method showed the highest water uptake properties.
The lowest and the highest water uptake was observed for the films incorporated with 4%MCM-41NPs and 4%MCM-41-APS-10%MET, respectively.
The dibromoterephthalic acid and tert-butylisophthalic acid based PBI showed the highest H3PO4 uptake in the series, while tert-butylisophthalic acid based PBI exhibited the highest water uptake.
Based on this study, borax-crosslinked hybrid scaffold showed good fibrous porous structure with high porosity (95.2%), highest water uptake capacity, good thermal stability, mechanical stability (storage modulus), and in vitro cell adhesion and proliferation with fibroblast (NIH3T3) cells.
The inclusion of GEL and CH in HPMC film increased in vitro drug release with respect to the inclusion of HA, although films containing HA showed the highest water uptake.
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Larger salt leaching amounts resulted in higher water uptake.
Polymers with poly(oxyethyleneglycol) have a high water uptake.
Such gels showed higher water uptake, especially in an environment with high electrolyte concentration.
Lowering the dose to 10 kGy resulted in lower gel fraction but higher water uptake.
With addition of nanoporous silica, the nanocomposite membranes show higher water uptake and proton conductivity.
The scaffolds had high water uptake and retention capacity with extended biodegradation rate.
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