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槲皮素共价连接脂质纳米颗粒:对肿瘤细胞的多方面杀伤作用

Quercetin Covalently Linked Lipid Nanoparticles: Multifaceted Killing Effect on Tumor Cells.

作者信息

Chen Shao-Qing, Wang Cheng, Song Yan-Qing, Tao Shan, Yu Fang-Ying, Lou Hai-Ya, Hu Fu-Qiang, Yuan Hong

机构信息

College of Pharmaceutical Sciences, Zhejiang University, Yuhangtang Road 866, Hangzhou 310058, China.

Sir Run Run Shaw Hospital, School of Medicine, Zhejiang University, No. 3, Qingchun East Road, Hangzhou 310016, China.

出版信息

ACS Omega. 2020 Nov 10;5(46):30274-30281. doi: 10.1021/acsomega.0c04795. eCollection 2020 Nov 24.

Abstract

The encapsulation of hydrophobic drugs is a problem that many researchers are working on. The goal of this study is to achieve the delivery of hydrophobic drugs by means of prodrugs and nanoformulations for a stronger tumor cell-killing effect and explore related killing mechanisms. Lipophilic quercetin (Qu) was covalently linked to glyceryl caprylate-caprate (Gcc) via disulfide bonds-containing 3,3'-dithiodipropionic acid (DTPA) to synthesize novel lipid Qu-SS-Gcc. Qu-SS-Gcc lipid nanoparticles (Qu-SS-Gcc LNPs) were fabricated using the solvent diffusion technique. The intracellular release of Qu by cleavage of nanocarriers was determined by liquid chromatography and compared with the uptake of free Qu. Detection methods, such as fluorescent quantitation, flow cytometry, and western blot were applied to explore the action mechanism induced by Qu. It was revealed that Qu-SS-Gcc LNPs could be cleaved by the high concentrations of reduction molecules in MCF-7/ADR (human multidrug-resistant breast cancer) cells, followed by the release of Qu. The intracellular Qu content produced by dissociation of Qu-SS-Gcc LNPs was higher than that produced by internalization of free Qu. The resulting release of Qu exerted superior cell-killing effects on MCF-7/ADR cells, such as P-gp inhibition by binding to P-gp binding sites, blocking the cell cycle in the G2 phase, and causing cell apoptosis and autophagy. Moreover, it was revealed autophagy triggered by a low concentration of Qu-SS-Gcc LNPs was beneficial to cell survival, while at a higher concentration, it acted as a cell killer. Qu-SS-Gcc LNPs can realize massive accumulation of Qu in tumor cells and exert a multifaceted killing effect on tumor cells, which is a reference for the delivery of hydrophobic drugs.

摘要

疏水性药物的包封是许多研究人员正在研究的一个问题。本研究的目的是通过前药和纳米制剂实现疏水性药物的递送,以增强肿瘤细胞杀伤效果,并探索相关的杀伤机制。亲脂性槲皮素(Qu)通过含二硫键的3,3'-二硫代二丙酸(DTPA)与辛酸癸酸甘油酯(Gcc)共价连接,合成新型脂质Qu-SS-Gcc。采用溶剂扩散技术制备了Qu-SS-Gcc脂质纳米粒(Qu-SS-Gcc LNPs)。通过液相色谱法测定纳米载体裂解后Qu的细胞内释放,并与游离Qu的摄取情况进行比较。应用荧光定量、流式细胞术和蛋白质免疫印迹等检测方法探索Qu诱导的作用机制。结果表明,Qu-SS-Gcc LNPs可被MCF-7/ADR(人多药耐药乳腺癌)细胞中高浓度的还原分子裂解,随后释放出Qu。Qu-SS-Gcc LNPs解离产生的细胞内Qu含量高于游离Qu内化产生的含量。释放出的Qu对MCF-7/ADR细胞具有优异的杀伤作用,如通过与P-糖蛋白结合位点结合抑制P-糖蛋白、使细胞周期阻滞在G2期以及导致细胞凋亡和自噬。此外,研究发现低浓度的Qu-SS-Gcc LNPs触发的自噬有利于细胞存活,而在较高浓度时,它则起到细胞杀伤作用。Qu-SS-Gcc LNPs能够实现Qu在肿瘤细胞中的大量蓄积,并对肿瘤细胞发挥多方面的杀伤作用,为疏水性药物的递送提供了参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bfa8/7689951/4ce4d8aff547/ao0c04795_0002.jpg

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