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Development of Lipid-Shell and Polymer Core Nanoparticles with Water-Soluble Salidroside for Anti-Cancer Therapy

机译:水溶性红景天苷类脂壳和聚合物核纳米颗粒的抗癌研究进展

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Salidroside (Sal) is a potent antitumor drug with high water-solubility. The clinic application of Sal in cancer therapy has been significantly restricted by poor oral absorption and low tumor cell uptake. To solve this problem, lipid-shell and polymer-core nanoparticles (Sal-LPNPs) loaded with Sal were developed by a double emulsification method. The processing parameters including the polymer types, organic phase, PVA types and amount were systemically investigated. The obtained optimal Sal-LPNPs, composed of PLGA-PEG-PLGA triblock copolymers and lipids, had high entrapment efficiency (65%), submicron size (150 nm) and negatively charged surface (−23 mV). DSC analysis demonstrated the successful encapsulation of Sal into LPNPs. The core-shell structure of Sal-LPNPs was verified by TEM. Sal released slowly from the LPNPs without apparent burst release. MTT assay revealed that 4T1 and PANC-1 cancer cell lines were sensitive to Sal treatment. Sal-LPNPs had significantly higher antitumor activities than free Sal in 4T1 and PANC-1 cells. The data indicate that LPNPs are a promising Sal vehicle for anti-cancer therapy and worthy of further investigation.
机译:红景天苷(Sal)是一种具有高水溶性的有效抗肿瘤药。 Sal在口腔癌中的临床应用受到口服吸收不良和肿瘤细胞摄取低的限制。为了解决这个问题,通过双重乳化方法开发了装载有Sal的脂质壳和聚合物核纳米颗粒(Sal-LPNP)。系统地研究了聚合物类型,有机相,PVA类型和用量等工艺参数。由PLGA-PEG-PLGA三嵌段共聚物和脂质组成的最佳Sal-LPNP具有高的包封率(65%),亚微米尺寸(150 nm)和带负电的表面(−23 mV)。 DSC分析表明成功地将Sal封装到LPNP中。 Sal-LPNPs的核-壳结构通过TEM证实。 Sal从LPNP中缓慢释放,没有明显的爆发释放。 MTT分析显示4T1和PANC-1癌细胞系对Sal治疗敏感。 Sal-LPNP在4T1和PANC-1细胞中具有比游离Sal高得多的抗肿瘤活性。数据表明,LPNPs是用于抗癌治疗的有希望的Sal载体,值得进一步研究。

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