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首页> 外文期刊>Journal of materials science >Novel Electrohydrodynamic Preparation Of Porous Chitosan Particles For Drug Delivery
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Novel Electrohydrodynamic Preparation Of Porous Chitosan Particles For Drug Delivery

机译:用于药物递送的多孔壳聚糖颗粒的新型电流体动力学制备

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Uniform spherical chitosan particles of size <10 μm in diameter are important in drug delivery applications due to their excellent biocompability and biodegradability. A high concentration of chitosan in the particles can help to control the release of drugs and methods for processing high viscosity chitosan solutions are therefore required. In principle, any type of polymer, whether hydrophobic or hydrophilic, can be electrosprayed to obtain monodisperse particles of diameter <10 μm. In practice, however, electrospraying of biopolymers having viscosities of > 100 mPa s results in particles >10 μm diameter. In this study, by reducing surface tension of a high viscosity chitosan suspension, it was found that smaller diameter particles could be prepared. Chitosan solutions were electrosprayed in the stable cone-jet mode to systematically study the relationship between particle diameter, viscosity and surface tension. Increasing viscosity resulted in larger diameter particles with a broad size distribution, but decreasing surface tension had the opposite effect. Results show that a chitosan solution having a viscosity of ~ 80 mPa s can be used to prepare chitosan particles of diameter ~ 2.5 μm which on drying reduced to particles of 500 nm.
机译:直径小于10μm的均匀球形壳聚糖颗粒由于其出色的生物相容性和生物降解性,在药物输送应用中非常重要。颗粒中高浓度的壳聚糖可以帮助控制药物的释放,因此需要用于加工高粘度壳聚糖溶液的方法。原则上,任何类型的聚合物,无论是疏水的还是亲水的,都可以进行电喷涂以获得直径小于10μm的单分散颗粒。然而,实际上,电喷雾粘度大于100 mPa s的生物聚合物会导致直径大于10μm的颗粒。在该研究中,通过降低高粘度壳聚糖悬浮液的表面张力,发现可以制备较小直径的颗粒。以稳定的锥喷模式对壳聚糖溶液进行电喷雾,以系统地研究粒径,粘度和表面张力之间的关系。粘度增加导致直径较大的颗粒具有较宽的尺寸分布,但降低表面张力则具有相反的效果。结果表明,可以使用粘度为〜80 mPa s的壳聚糖溶液制备直径为〜2.5μm的壳聚糖颗粒,该颗粒在干燥后会还原为500 nm的颗粒。

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