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基于甲氧基聚乙二醇-胆固醇缀合物的胶束用于控制和靶向递药以输送疏水性差的药物。

Micelles based on methoxy poly(ethylene glycol)-cholesterol conjugate for controlled and targeted drug delivery of a poorly water soluble drug.

机构信息

State Key Laboratory of Biotherapy, West China Hospital, Sichuan University, Chengdu, Sichuan 610041, China.

出版信息

J Biomed Nanotechnol. 2012 Oct;8(5):809-17. doi: 10.1166/jbn.2012.1433.

Abstract

In this study, quercetin (QC) with cancer chemoprevention effect and anticancer potential was loaded into polymeric micelles of methoxy poly(ethylene glycol)-cholesterol conjugate (mPEG-Chol) in order to increase its water solubility. MPEG-Chol with lower critical micelle concentration (CMC) value (4.0 x 10(-7) M - 13 x 10(-7) M) was firstly synthesized involving two steps of chemical modification on cholesterol by esterification, and then QC was incorporated into mPEG-Chol micelles by self-assembly method. After the process parameters were optimized, QC-loaded micelles had higher drug loading (3.66%) and entrapment efficiency (93.51%) and nano-sized diameter (116 nm). DSC analysis demonstrated that QC had been incorporated non-covalently into the micelles and existed as an amorphous state or a solid solution in the polymeric matrix. The freeze-dried formulation with addition of 1% (w/v) mannitol as cryoprotectant was successfully developed for the long-term storage of QC-loaded micelles. Compared to free QC, QC-loaded micelles could release QC more slowly. Moreover, the release of QC from micelles was slightly faster in PBS at pH 5 than that in PBS at pH 7.4, which implied that QC-loaded micelles might be pH-sensitive and thereby selectively deliver QC to tumor tissue with unwanted side effects. Therefore, mPEG-Chol was a promising micellar vector for the controlled and targeted drug delivery of QC to tumor and QC-loaded micelles were also worth being further investigated as a potential formulation for cancer chemoprevention and treatment.

摘要

在这项研究中,具有癌症化学预防作用和抗癌潜力的槲皮素 (QC) 被负载到甲氧基聚乙二醇-胆固醇共轭物 (mPEG-Chol) 的聚合物胶束中,以提高其水溶性。mPEG-Chol 的临界胶束浓度 (CMC) 值较低 (4.0 x 10(-7) M - 13 x 10(-7) M),首先通过酯化反应对胆固醇进行两步化学修饰合成,然后通过自组装法将 QC 掺入 mPEG-Chol 胶束中。在优化了工艺参数后,载药胶束具有更高的载药量(3.66%)和包封率(93.51%)以及纳米级粒径(116nm)。DSC 分析表明,QC 已非共价掺入胶束中,并以无定形状态或固体溶液形式存在于聚合物基质中。成功开发了添加 1%(w/v)甘露醇作为冷冻保护剂的冻干配方,以长期储存载药胶束。与游离 QC 相比,载药胶束可以更缓慢地释放 QC。此外,在 pH 5 的 PBS 中,QC 从胶束中的释放速度比在 pH 7.4 的 PBS 中稍快,这表明载药胶束可能具有 pH 敏感性,从而可以选择性地将 QC 递送到肿瘤组织,而不会产生不必要的副作用。因此,mPEG-Chol 是一种有前途的胶束载体,可用于将 QC 进行控制和靶向递送到肿瘤,并且载药胶束也值得进一步研究,作为癌症化学预防和治疗的潜在制剂。

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