Abstract
Spherical cellulose beads with tailored mean diameter between micrometer (20-80 μm) and nanometer (40-200 nm) ranges were fabricated from regenerated cellulose of paper wastes via water-in-oil (W/O) microemulsion and nanoprecipitation processes, respectively. The mean diameter ranges of cellulose beads were precisely controlled via modulating fabrication parameters such as stirring speed, surfactant concentration, cellulose concentration, and reaction temperature. By tailoring their mean diameter ranges and using curcumin as a model drug, cellulose beads with enhanced loading capacities and optimized release kinetic profiles of curcumin were fabricated.
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CITATION STYLE
Voon, L. K., Pang, S. C., & Chin, S. F. (2017). Optimizing Delivery Characteristics of Curcumin as a Model Drug via Tailoring Mean Diameter Ranges of Cellulose Beads. International Journal of Polymer Science, 2017. https://doi.org/10.1155/2017/2581767
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