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自组装环糊精纳米粒子增强疏水性大蒜素的细胞递送。

Self-Assembling Cyclodextrin-Based Nanoparticles Enhance the Cellular Delivery of Hydrophobic Allicin.

机构信息

Beijing Advanced Innovation Center for Food Nutrition and Human Health, College of Food Science & Nutritional Engineering, China Agricultural University, Beijing 100083, China.

Key Laboratory of Safety Assessment of Genetically Modified Organism (Food Safety), Ministry of Agriculture, Beijing 100083, China.

出版信息

J Agric Food Chem. 2020 Oct 7;68(40):11144-11150. doi: 10.1021/acs.jafc.0c01900. Epub 2020 Sep 22.

Abstract

Most chemotherapeutics are hydrophobic molecules and need to be converted into hydrophilic formulations before administration. To address this issue, a novel cyclodextrin-based nanoparticle was proposed as a versatile carrier for cellular delivery of hydrophobic molecules. First, the effect of the polylysine (PL)/NH-β-cyclodextrin (NH-β-CD) ratio on particle size and encapsulation efficiency in prepared complexes was investigated. Subsequently, transmission electron microscopy images showed that the sizes of PL/NH-β-CD nanoparticles ranging from 10 to 260 nm decreased with the reduction in the PL/NH-β-CD ratio, which was completely consistent with the findings of size distributions. At a PL/NH-β-CD ratio of 10, the surface charge on the PL/NH-β-CD nanoparticle was maximized at (+52.8 mV), and encapsulation efficiency was optimal (47.2%), which revealed a great advantage in delivery of hydrophobic allicin. In addition, the positive charge of PL chains facilitated the cellular uptake of the PL/NH-β-CD-DOX by interacting with the negatively charged cell membrane. Conclusively, this study suggests that the combination of allicin and PL/NH-β-CD nanoparticles acting on the S and G2/M phases in cell cycle regulation induces apoptosis and exhibits substantial application in killing cancer cells.

摘要

大多数化疗药物都是疏水分子,在给药前需要转化为亲水性制剂。为了解决这个问题,提出了一种新型的基于环糊精的纳米粒子,作为亲脂性分子细胞递药的通用载体。首先,研究了聚赖氨酸(PL)/NH-β-环糊精(NH-β-CD)比例对制备复合物中颗粒大小和包封效率的影响。随后,透射电子显微镜图像显示,PL/NH-β-CD 纳米颗粒的尺寸范围为 10 至 260nm,随着 PL/NH-β-CD 比例的降低而减小,这与粒径分布的结果完全一致。在 PL/NH-β-CD 比例为 10 时,PL/NH-β-CD 纳米颗粒的表面电荷达到最大值(+52.8mV),包封效率最佳(47.2%),这在疏水性大蒜素的递送上具有很大的优势。此外,PL 链的正电荷通过与带负电荷的细胞膜相互作用,促进了 PL/NH-β-CD-DOX 被细胞摄取。总之,本研究表明,大蒜素与 PL/NH-β-CD 纳米粒子的结合作用于细胞周期调节的 S 和 G2/M 期,诱导细胞凋亡,并在杀伤癌细胞方面具有很大的应用潜力。

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