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树枝状聚合物功能化锂皂石纳米盘作为抗癌药物递送平台

Dendrimer-Functionalized Laponite Nanodisks as a Platform for Anticancer Drug Delivery.

作者信息

Mustafa Rania, Luo Yu, Wu Yilun, Guo Rui, Shi Xiangyang

机构信息

College of Chemistry, Chemical Engineering and Biotechnology, Donghua University, Shanghai 201620, China.

CQM-Centro de Química da Madeira, Universidade da Madeira, Campus da Penteada, 9000-390 Funchal, Portugal.

出版信息

Nanomaterials (Basel). 2015 Oct 20;5(4):1716-1731. doi: 10.3390/nano5041716.

Abstract

In this study, we synthesized dendrimer-functionalized laponite (LAP) nanodisks for loading and delivery of anticancer drug doxorubicin (DOX). Firstly, LAP was modified with silane coupling agents and succinic anhydride to render abundant carboxyl groups on the surface of LAP. Then, poly(amidoamine) (PAMAM) dendrimer of generation 2 (G2) were conjugated to form LM-G2 nanodisks. Anticancer drug DOX was then loaded on the LM-G2 with an impressively high drug loading efficiency of 98.4% and could be released in a pH-sensitive and sustained manner. Moreover, cell viability assay results indicate that LM-G2/DOX complexes could more effectively inhibit the proliferation of KB cells (a human epithelial carcinoma cell line) than free DOX at the same drug concentration. Flow cytometry analysis and confocal laser scanning microscope demonstrated that LM-G2/DOX could be uptaken by KB cells more effectively than free DOX. Considering the exceptional high drug loading efficiency and the abundant dendrimer amine groups on the surface that can be further modified, the developed LM-G2 nanodisks may hold a great promise to be used as a novel platform for anticancer drug delivery.

摘要

在本研究中,我们合成了树枝状聚合物功能化锂皂石(LAP)纳米盘,用于负载和递送抗癌药物阿霉素(DOX)。首先,用硅烷偶联剂和琥珀酸酐对LAP进行修饰,使其表面带有丰富的羧基。然后,将第二代(G2)聚(酰胺胺)(PAMAM)树枝状聚合物偶联形成LM-G2纳米盘。接着,将抗癌药物DOX负载到LM-G2上,药物负载效率高达98.4%,且能以pH敏感和持续的方式释放。此外,细胞活力测定结果表明,在相同药物浓度下,LM-G2/DOX复合物比游离DOX更能有效地抑制KB细胞(一种人上皮癌细胞系)的增殖。流式细胞术分析和共聚焦激光扫描显微镜表明,LM-G2/DOX比游离DOX更能有效地被KB细胞摄取。考虑到其极高的药物负载效率以及表面可进一步修饰的丰富树枝状聚合物胺基,所开发的LM-G2纳米盘有望成为一种新型的抗癌药物递送平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1931/5304796/9c5f808276bf/nanomaterials-05-01716-g001.jpg

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