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Formation of Liquid-Crystalline Structures in the Bile Salt-Chitosan System and Triggered Release from Lamellar Phase Bile Salt-Chitosan Capsules

机译:胆汁盐-壳聚糖系统中液晶结构的形成和层状相胆汁盐-壳聚糖胶囊的触发释放

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Nanostructured capsules comprised of the anionic bile salt, sodium taurodeoxycholate (STDC), and the biocompatible cationic polymer, chitosan, were prepared to assess their potential as novel tailored release nanomaterials. For comparison, a previously studied system, sodium dodecyl sulfate (SDS), and polydiallyldimethylammonium chloride (polyDADMAC) was also investigated. Crdssed-polarizing light microscopy (CPLM) and small-angle X-ray scattering (SAXS) identified the presence of lamellar and hexagonal phase at the surfactant—polymer interface of the respective systems. The hydrophobic and electrostatic interactions between the oppositely charged components were studied by varying temperature and salt concentration, respectively, and were found to influence the liquid-crystalline nanostructure formed. The hexagonal phase persisted at high temperatures, however the lamellar phase structure was lost above ca. 45 °C. Both mesophases were found to dissociate upon addition of 4% NaCl solution. The rate of release of the model hydrophilic drug, Rhodamine B (RhB), from the lamellar phase significantly increased in response to changes in the solution conditions studied, suggesting that modulating the drug release from these bile salt—chitosan capsules is readily achieved. In contrast, release from the hexagonal . phase capsules had no appreciable response to the stimuli applied. These findings provide a platform for these oppositely charged surfactant and polymer systems to function as stimuli-responsive or sustained-release drug delivery systems.
机译:制备了由阴离子胆汁盐,牛磺脱氧胆酸钠(STDC)和生物相容性阳离子聚合物壳聚糖组成的纳米胶囊,以评估其作为新型定制释放纳米材料的潜力。为了进行比较,还研究了先前研究的系统,十二烷基硫酸钠(SDS)和聚二烯丙基二甲基氯化铵(polyDADMAC)。 Crdssed偏振光显微镜(CPLM)和小角X射线散射(SAXS)确定了在各自系统的表面活性剂-聚合物界面处存在层状和六方相。分别通过改变温度和盐浓度研究了带相反电荷的组分之间的疏水和静电相互作用,发现它们会影响形成的液晶纳米结构。六方相在高温下持续存在,但层状相结构在约1200℃以上失去。 45℃。发现在添加4%NaCl溶液后两个中间相均解离。响应所研究的溶液条件变化,模型亲水性药物若丹明B(RhB)从层状相中释放的速率显着增加,这表明调节这些胆盐-壳聚糖胶囊的药物释放很容易。相反,从六角形释放。相胶囊对施加的刺激没有明显的反应。这些发现为这些带相反电荷的表面活性剂和聚合物系统提供了一个平台,以充当刺激响应或持续释放的药物输送系统。

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