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首页> 外文期刊>Biomaterials >Amphiphilic multiarm star block copolymer-based multifunctional unimolecular micelles for cancer targeted drug delivery and MR imaging.
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Amphiphilic multiarm star block copolymer-based multifunctional unimolecular micelles for cancer targeted drug delivery and MR imaging.

机译:基于两亲性多臂星形嵌段共聚物的多功能单分子胶束,用于靶向癌症的药物递送和MR成像。

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摘要

We report on the fabrication of multifunctional polymeric unimolecular micelles as an integrated platform for cancer targeted drug delivery and magnetic resonance imaging (MRI) contrast enhancement under in vitro and in vivo conditions. Starting from a fractionated fourth-generation hyperbranched polyester (Boltorn H40), the ring-opening polymerization of varepsilon-caprolactone (CL) from the periphery of H40 and subsequent terminal group esterification with 2-bromoisobutyryl bromide afforded star copolymer-based atom transfer radical polymerization (ATRP) macroinitiator, H40-PCL-Br. Well-defined multiarm star block copolymers, H40-PCL-b-P(OEGMA-co-AzPMA), were then synthesized by the ATRP of oligo(ethylene glycol) monomethyl ether methacrylate (OEGMA) and 3-azidopropyl methacrylate (AzPMA). This was followed by the click reaction of H40-PCL-b-P(OEGMA-co-AzPMA) with alkynyl-functionalized cancer cell-targeting moieties, alkynyl-folate, and T(1)-type MRI contrast agents, alkynyl-DOTA-Gd (DOTA is 1,4,7,10-tetraazacyclododecane-1,4,7,10-tetrakisacetic acid), affording H40-PCL-b-P(OEGMA-Gd-FA). In aqueous solution, the amphiphilic multiarm star block copolymer exists as structurally stable unimolecular micelles possessing a hyperbranched polyester core, a hydrophobic PCL inner layer, and a hydrophilic P(OEGMA-Gd-FA) outer corona. H40-PCL-b-P(OEGMA-Gd-FA) unimolecular micelles are capable of encapsulating paclitaxel, a well-known hydrophobic anticancer drug, with a loading content of 6.67 w/w% and exhibiting controlled release of up to 80% loaded drug over a time period of approximately 120 h. In vitro MRI experiments demonstrated considerably enhanced T(1) relaxivity (18.14 s(-1) mM(-1)) for unimolecular micelles compared to 3.12 s(-1) mM(-1) for that of the small molecule counterpart, alkynyl-DOTA-Gd. Further experiments of in vivo MR imaging in rats revealed good accumulation of unimolecular micelles within rat liver and kidney, prominent positive contrast enhancement, and relatively long duration of blood circulation. The reported unimolecular micelles-based structurally stable nanocarriers synergistically integrated with cancer targeted drug delivery and controlled release and MR imaging functions augur well for their potential applications as theranostic systems.
机译:我们报告多功能聚合物单分子胶束的制造,作为在体外和体内条件下靶向癌症的药物递送和磁共振成像(MRI)对比增强的综合平台。从分馏的第四代超支化聚酯(Boltorn H40)开始,缬氨酸-己内酯(CL)从H40的周边开环聚合,随后用2-溴异丁酰溴进行端基酯化,从而提供了基于星形共聚物的原子转移自由基聚合(ATRP)大分子引发剂H40-PCL-Br。然后通过低聚乙二醇(甲基)单甲基醚甲基丙烯酸酯(OEGMA)和甲基丙烯酸3-叠氮基丙基酯(AzPMA)的ATRP合成了定义明确的多臂星形嵌段共聚物H40-PCL-b-P(OEGMA-co-AzPMA)。随后是H40-PCL-bP(OEGMA-co-AzPMA)与炔基官能化的癌细胞靶向部分,炔基叶酸和T(1)型MRI造影剂,炔基-DOTA-Gd的点击反应(DOTA是1,4,7,10-四氮杂环十二烷-1,4,7,10-四仲乙酸),得到H40-PCL-bP(OEGMA-Gd-FA)。在水溶液中,两亲性多臂星形嵌段共聚物以结构稳定的单分子胶束形式存在,该胶束具有超支化聚酯核,疏水性PCL内层和亲水性P(OEGMA-Gd-FA)外电晕。 H40-PCL-bP(OEGMA-Gd-FA)单分子胶束能够封装紫杉醇(一种著名的疏水性抗癌药物),其载药量为6.67 w / w%,在超过60%的载药量下可控制释放大约120小时的时间。体外MRI实验表明,单分子胶束的T(1)弛豫性大大提高(18.14 s(-1)mM(-1)),而小分子对应物炔基的T(1)弛豫性为3.12 s(-1)mM(-1)。 -DOTA-Gd。在大鼠体内进行MR成像的进一步实验表明,大鼠肝脏和肾脏中单分子胶束的良好聚集,显着的正反差增强和相对较长的血液循环时间。已报道的基于单分子胶束的结构稳定的纳米载体与靶向癌症的药物输送,控释和MR成像协同整合,预示了它们作为治疗诊断系统的潜在应用。

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