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β-环糊精接枝α,β-聚天冬氨酸空心纳米球作为喜树碱载体的制备。

Hollow nanosphere fabricated from β-cyclodextrin-grafted α,β-poly(aspartic acid) as the carrier of camptothecin.

机构信息

College of Chemical Engineering, Wuhan University of Technology, Wuhan 430070, PR China.

出版信息

Colloids Surf B Biointerfaces. 2013 May 1;105:120-7. doi: 10.1016/j.colsurfb.2012.12.024. Epub 2012 Dec 29.

DOI:10.1016/j.colsurfb.2012.12.024
PMID:23376743
Abstract

This research is aimed to develop a kind of hollow nanosphere based on β-cyclodextrin-grafted α, β-poly(aspartic acid) (β-CD-graft-PAsp) as drug carrier to enhance the stability of camptothecin (CPT) in aqueous media. Firstly, mono(6-(2-aminoethyl) amino-6-deoxy)-β-cyclodextrin (β-CDen) was synthesized by a substitution reaction between mono-6-deoxy-6-(p-tolylsulfonyl)-β-cyclodextrin (6-OTs-β-CD) and ethylenediamine; and then, the five-member rings in poly(L-succinimide) (PSI) were successively opened by β-CDen to obtain β-CD-graft-PAsp. The synthesized β-CD-graft-PAsp was found to form the unique hollow nanosphere with the internal hole of about 17 nm and many β-CD cavities of 0.7 nm interspersed on the shell. The drug-loading behavior of the hollow nanosphere was also evaluated by using CPT as guest molecule of β-CD. It was worth of note that the β-CD-graft-PAsp hollow nanosphere as carrier enhanced the stability of CPT in aqueous media, and the CPT from the β-CD-graft-PAsp hollow nanosphere displayed a sustained release profile and hence resulted in the essential decrease of cytotoxicity to L929 cell line. Furthermore, almost no cytotoxicity of the β-CD-graft-PAsp is desirable for the application of drug carrier. As a result, the β-CD-graft-PAsp hollow nanosphere showed a great potential as the carrier of CPT.

摘要

本研究旨在开发一种基于β-环糊精接枝α,β-聚(天冬氨酸)(β-CD-graft-PAsp)的空心纳米球作为药物载体,以提高喜树碱(CPT)在水介质中的稳定性。首先,通过单-6-脱氧-6-(对甲苯磺酰基)-β-环糊精(6-OTs-β-CD)与乙二胺之间的取代反应合成单(6-(2-氨基乙基)氨基-6-脱氧)-β-环糊精(β-CDen);然后,通过β-CDen 连续开环聚(L-琥珀酰亚胺)(PSI),得到β-CD-graft-PAsp。所合成的β-CD-graft-PAsp 形成了独特的空心纳米球,内部孔约 17nm,壳上散布着许多 0.7nm 的β-CD 腔。还通过以 CPT 作为β-CD 的客体分子来评估空心纳米球的药物负载行为。值得注意的是,作为载体的β-CD-graft-PAsp 空心纳米球增强了 CPT 在水介质中的稳定性,并且来自β-CD-graft-PAsp 空心纳米球的 CPT 显示出持续释放的特性,从而导致对 L929 细胞系的细胞毒性显著降低。此外,β-CD-graft-PAsp 几乎没有细胞毒性,可用于药物载体。因此,β-CD-graft-PAsp 空心纳米球作为 CPT 的载体具有很大的潜力。

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