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壳聚糖接枝聚己内酯阳离子纳米胶束的制备及其作为 7-乙基-10-羟基喜树碱载体的研究。

Fabrication of cationic nanomicelle from chitosan-graft-polycaprolactone as the carrier of 7-ethyl-10-hydroxy-camptothecin.

机构信息

Institutes for Advanced Interdisciplinary Research, East China Normal University, and Department of Diagnostic Imaging, Changzheng Hospital, Shanghai 200062, PR China.

出版信息

Colloids Surf B Biointerfaces. 2010 Apr 1;76(2):475-82. doi: 10.1016/j.colsurfb.2009.12.007. Epub 2009 Dec 16.

Abstract

In this research, amphiphilic brush-like polycations were synthesized, and used to fabricate cationic nanomicelle as the carrier of 7-ethyl-10-hydroxy-camptothecin (SN-38), in order to enhance its cellular uptake, solubility and stability in aqueous media. In particular, cationic chitosan-graft-polycaprolactone (CS-g-PCL) copolymers were synthesized with a facile one-pot manner via ring-opening polymerization of epsilon-CL onto the hydroxyl groups of CS by using methanesulfonic acid as solvent and catalyst. The formation of CS-g-PCL nanomicelles was confirmed by fluorescence spectrophotoscopy and particle size measurements. It was found that all the nanomicelles showed spherical shapes with narrow size distributions. Their sizes ranged from 47 to 113 nm, and the zeta potentials ranged from 26.7 to 50.8 mV, depending on the grafting content of PCL in CS-g-PCL, suggesting their passive targeting to tumor tissue and endocytosis potential. Water-insoluble antitumor drug, SN-38, was easily encapsulated into CS-g-PCL nanomicelles by lyophilization method. In comparison with bare CS-g-PCL nanomicelles, the corresponding SN-38-loaded nanomicelles showed increased particle sizes and a little reduced zeta potentials. With an increase of grafting PCL content, the drug encapsulation efficiency (EE) and drug loading (DL) of the nanomicelles increased from 64.3 to 84.6% and 6.43 to 8.66%, respectively, whereas their accumulative drug release showed a tendency to decrease due to the enhanced hydrophobic interaction between hydrophobic drug and hydrophobic PCL segments in CS-g-PCL. Also, the CS-g-PCL nanomicelles effectively protected the active lactone ring of SN-38 from hydrolysis under physiological condition, due to the encapsulation of SN-38 into the hydrophobic cores in the nanomicelles. Compared with free SN-38, the SN-38-loaded nanomicelles showed essential decreased cytotoxicity against L929 cell line, and bare CS-g-PCL nanomicelles almost showed non-toxicity. These results suggested the potential utilization of the CS-g-PCL nanomicelles as the carriers of hydrophobic drugs with improving the delivery and release properties.

摘要

在这项研究中,合成了两亲性刷状聚阳离子,并将其用于制备阳离子纳米胶束作为 7-乙基-10-羟基喜树碱(SN-38)的载体,以提高其细胞摄取率、在水介质中的溶解度和稳定性。特别是,通过ε-CL 在 CS 上的羟基的开环聚合,以甲磺酸为溶剂和催化剂,以简便的一锅法合成了阳离子壳聚糖接枝聚己内酯(CS-g-PCL)共聚物。通过荧光分光光度法和粒径测量证实了 CS-g-PCL 纳米胶束的形成。结果表明,所有纳米胶束均呈球形,粒径分布较窄。它们的粒径范围为 47 至 113nm,Zeta 电位范围为 26.7 至 50.8mV,这取决于 CS-g-PCL 中 PCL 的接枝含量,表明它们具有被动靶向肿瘤组织和内吞的潜力。水不溶性抗肿瘤药物 SN-38 可通过冻干法轻松包封到 CS-g-PCL 纳米胶束中。与裸 CS-g-PCL 纳米胶束相比,载药纳米胶束的粒径略有增加,Zeta 电位略有降低。随着接枝 PCL 含量的增加,纳米胶束的药物包封效率(EE)和药物载量(DL)分别从 64.3%增加到 84.6%和从 6.43%增加到 8.66%,而由于疏水药物与 CS-g-PCL 中的疏水 PCL 段之间的增强的疏水相互作用,其累积药物释放呈现出减少的趋势。此外,由于 SN-38 被包封在纳米胶束的疏水核内,CS-g-PCL 纳米胶束在生理条件下有效保护了 SN-38 的活性内酯环免受水解。与游离 SN-38 相比,载药纳米胶束对 L929 细胞系的细胞毒性明显降低,而裸 CS-g-PCL 纳米胶束几乎没有毒性。这些结果表明,CS-g-PCL 纳米胶束作为疏水性药物载体具有改善递送和释放性能的潜力。

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