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由两亲性聚合物-喜树碱缀合物组装而成的叶酸修饰且对还原敏感的胶束用于细胞内药物递送。

Folate-decorated and reduction-sensitive micelles assembled from amphiphilic polymer-camptothecin conjugates for intracellular drug delivery.

作者信息

Liu Chaoyu, Yuan Jiang, Luo Xiaoming, Chen Maohua, Chen Zhoujiang, Zhao Yuancong, Li Xiaohong

机构信息

Key Laboratory of Advanced Technologies of Materials, Ministry of Education of China, School of Materials Science and Engineering, Southwest Jiaotong University , Chengdu 610031, P. R. China.

出版信息

Mol Pharm. 2014 Nov 3;11(11):4258-69. doi: 10.1021/mp500468d. Epub 2014 Oct 3.

Abstract

It is one of the challenges for a wide clinical application of polymer micelles to address the structure disintegration and premature drug release before reaching a pathological site. In the current study, folic acid (FA)-decorated polymer-drug conjugates (FSC) were synthesized with disulfide linkages between camptothecin (CPT) and amphiphilic poly(ethylene glycol)-b-poly(ε-caprolactone) (PECL) copolymers. FSC conjugates were proposed to assemble into micelles with a hydrophobic core of PCL segments and CPT and a hydrophilic corona of PEG segments. The addition of hexadecanol during micelle formation (FSC-16) was proposed to modulate the interactions of hydrophobic segments in micelles and enhance the reductive sensitivity. FSC-16 micelles were obtained with critical micelle concentration of around 2 μg/mL and an average size of around 200 nm, and the conjugated CPT was rapidly released out in response to glutathione. The reductive sensitivity was also demonstrated with respect to the changes of micelle size and morphologies as well as the fluorescent intensity of pyrene loaded in micelles. Benefiting from the FA receptor-mediated uptake and the reduction-sensitive release of CPT, significant cytotoxicity and cell apoptosis were identified for FSC-16 micelles against SKOV-3 cells with strong expressions of FA receptors. Flow cytometry and confocal laser scanning microscopy analyses demonstrated that CPT was distributed into nuclei after cellular uptake and intracellular release from FSC-16 micelles. Thus, the FA-decorated and reduction-sensitive micelles assembled from polymer-drug conjugates show advantages in inhibiting premature release during circulation, enhancing cellular uptake at the tumor tissues, and promoting intracellular release and nuclei location of the active moieties.

摘要

聚合物胶束在广泛的临床应用中面临的挑战之一是解决其结构解体以及在到达病理部位之前药物过早释放的问题。在本研究中,合成了叶酸(FA)修饰的聚合物 - 药物偶联物(FSC),其中喜树碱(CPT)与两亲性聚(乙二醇)-b-聚(ε-己内酯)(PECL)共聚物之间通过二硫键连接。FSC偶联物被认为可组装成胶束,其疏水核心由PCL链段和CPT组成,亲水冠层由PEG链段构成。在胶束形成过程中添加十六醇(FSC - 16)被认为可调节胶束中疏水链段的相互作用并增强还原敏感性。FSC - 16胶束的临界胶束浓度约为2μg/mL,平均粒径约为200nm,并且共轭CPT会响应谷胱甘肽而迅速释放出来。还通过胶束尺寸和形态的变化以及胶束中芘的荧光强度证明了其还原敏感性。受益于FA受体介导的摄取以及CPT的还原敏感释放,FSC - 16胶束对具有强FA受体表达的SKOV - 3细胞具有显著的细胞毒性和细胞凋亡作用。流式细胞术和共聚焦激光扫描显微镜分析表明,CPT在细胞摄取并从FSC - 16胶束中细胞内释放后分布到细胞核中。因此,由聚合物 - 药物偶联物组装而成的FA修饰且对还原敏感型胶束在抑制循环过程中的过早释放、增强肿瘤组织处的细胞摄取以及促进活性部分的细胞内释放和细胞核定位方面具有优势。

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