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Finally, highlights on the challenges faced in solvent casting particle leaching methods, suggestions for further research and development has been expressed.
In this paper, we fabricated PU scaffolds by combining phase inversion and salt (sodium chloride) leaching methods.
A new class of polylactic acid (PLA)/polyethylene glycol (PEG) copolymer reinforced with bacterial cellulose nanofibers (BC) was prepared using a solvent casting and particulate leaching methods.
In this study, we developed a bone marrow scaffold consisting of a modular flow chamber made of polydimethylsiloxane, holding a silk sponge, prepared with salt leaching methods and functionalized with extracellular matrix components.
Current tissue engineering scaffolds fabricated via solvent casting and porogen leaching methods suffer from the lack of control over parameters such as interconnectivity and pore geometry, properties that are a function of the fabrication process.
The aim of this work was the preparation of three dimensional porous poly(lactic acid) (PLA) scaffold with high porosity from PLA-dioxane-water ternary system with the use of vacuum-assisted solvent casting, phase separation, solvent extraction and particle leaching methods.
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Novel β-Ca2SiO4/PHBV composite scaffolds were fabricated by integrating β-Ca2SiO4 nanoparticles with PHBV backbone via a modified solvent casting-particulates leaching method, which generates interconnected porous structure and the high porosity, about 87%, of these scaffolds.
The cation exchange capacity was determined by leaching method with ammonium acetate solution (1 M NH4OAc).
The Exchangeable bases (Ca, Mg, K, and Na) and cation exchange capacity (CEC) were determined by leaching method with ammonium acetate solution (1 M NH4OAc).
They were fabricated by a gas foaming/salt leaching method.
Porous PLGA matrices containing AsAP and Dex were prepared by solvent casting/particulate leaching method.
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