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Formulation and characterization of hydrophilic drug diclofenac sodium-loaded solid lipid nanoparticles based on phospholipid complexes technology

机译:基于磷脂复合物技术的亲水性双氯芬酸钠钠固体脂质纳米粒的制备与表征

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摘要

To successfully prepare the diclofenac sodium (DS)-loaded solid lipid nanoparticles (SLNs), phospholipid complexes (PCs) technology was applied here to improve the liposolubility of DS. Solid lipid nanoparticles (SLNs) loaded with phospholipid complexes (PCs) were prepared by the modified emulsion/solvent evaporation method. DS could be solubilized effectively in the organic solvents with the existence of phospholipid and apparent partition coefficient of DS in PCs increased significantly. X-ray diffraction analysis suggested that DS in PCs was either molecularly dispersed or in an amorphous form. However, no significant difference was observed between the Fourier transform infrared spectroscopy (FT-IR) spectra of physical mixture and that of PCs. Particles with small sizes, narrow polydispersity indexes and high entrapment efficiencies could be obtained with the addition of PCs. Furthermore, according to the transmission electron microscopy, a core-shell structure was likely to be formed. The presence of PCs caused the change of zeta potential and retarded the drug release of SLNs, which indicated that phospholipid formed multilayers around the solid lipid core of SLNs. Both FT-IR and differential scanning calorimetry analysis also illustrated that some weak interactions between DS and lipid materials might take place during the preparation of SLNs. In conclusion, the model hydrophilic drug-DS can be formulated into the SLNs with the help of PCs.
机译:为了成功制备负载双氯芬酸钠(DS)的固体脂质纳米颗粒(SLN),此处应用了磷脂复合物(PCs)技术来改善DS的脂溶性。通过改进的乳液/溶剂蒸发法制备了负载有磷脂复合物(PC)的固体脂质纳米颗粒(SLN)。随着磷脂的存在,DS可以有效地溶解在有机溶剂中,并且DS在PC中的表观分配系数显着增加。 X射线衍射分析表明,PC中的DS是分子分散的或无定形的。但是,在物理混合物和PC的傅立叶变换红外光谱(FT-IR)光谱之间未观察到显着差异。添加PC可获得粒径小,多分散指数窄,包封率高的颗粒。此外,根据透射电子显微镜,很可能形成核-壳结构。 PCs的存在引起ζ电位的改变并延迟了SLNs的药物释放,这表明磷脂在SLNs的固体脂质核心周围形成多层。 FT-IR和差示扫描量热分析均表明,在制备SLN的过程中,DS和脂质材料之间可能会发生一些弱相互作用。总之,可以在PC的帮助下将模型亲水性药物DS配制为SLN。

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