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Swelling of a Sponge Lipid Phase via Incorporation of a Nonionic Amphiphile: SANS and SAXS Studies

机译:通过掺入非离子两部两体的血管相溶胀:SAN和SAXS研究

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Small-angle X-ray scattering (SAXS) is employed to establish the structure of a self-assembled lipid/water system formed in excess aqueous phase by pharmaceutical-grade glycerol monooleate (GMO). A nonionic guest component (octyl glucoside) is incorporated with the purpose to study the swelling of the structure under full hydration. Small-angle neutron scattering (SANS) is used for characterization of the micellar properties of the octyl glucoside amphiphile and glycerol monooleate. The obtained SAXS and SANS patterns indicate a sponge-type supramolecular organization of the investigated lipid material. Their analysis allows determination of the average cell-cell distances in the bicontinuous bilayer sponge that are essential for the encapsulation of biomolecules and drugs. In the presence of the guest octyl glucoside (OG) the average size of the sponge cells is increased by about 14%. This would be an advantageous feature for the application of sponge-type liquid crystalline carriers as protein drug delivery vehicles, nanostructured bioreactors, and peptide-encapsulating fluid nanomaterials.
机译:采用小角度X射线散射(SAX)来建立通过药物级甘油单烯烃(GMO)在过量水相中形成的自组装脂质/水系统的结构。一个非离子客体组分(辛基葡糖苷)是为了在完全水合下研究结构的溶胀。小角度中子散射(SAN)用于表征辛基葡萄糖苷两亲物和甘油单烯烃的胶束性质。所获得的淋巴和SANS图案表示所研究的脂质材料的海绵型超分子组织。它们的分析允许确定双层双层海绵中的平均细胞间距,这对于封装生物分子和药物来说是必不可少的。在奥辛基葡萄糖苷(OG)的存在下,海绵细胞的平均尺寸增加了约14%。这将是应用海绵型液晶载体作为蛋白质药物递送载体,纳米结构生物反应器和包封肽的流体纳米材料的有利特征。

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