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首页> 外文期刊>Biomacromolecules >Folate-Functionalized Unimolecular Micelles Based on a Degradable Amphiphilic Dendrimer-Like Star Polymer for Cancer Cell-Targeted Drug Delivery
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Folate-Functionalized Unimolecular Micelles Based on a Degradable Amphiphilic Dendrimer-Like Star Polymer for Cancer Cell-Targeted Drug Delivery

机译:叶酸功能化的单分子胶束基于可降解的两亲树状大分子星形聚合物,用于靶向癌细胞的药物递送。

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摘要

A folate-functionalized degradable amphiphilic dendrimer-like star polymer (FA-DLSP) with a well-defined poly(L-lactide) (PLLA) star polymer core and six hydrophilic polyester dendrons based on 2,2-bis(hydroxymethyl) propionic acid was successfully synthesized to be used as a nanoscale carrier for cancer cell-targeted drug delivery. This FA-DLSP hybrid formed unimolecular micelles in the aqueous solution with a mean particle size of ca. 15 nm as determined by dynamic light scattering and transmission electron microscopy. To study the feasibility of FA-DLSP micelles as a potential nanocarrier for targeted drug delivery, we encapsulated a hydrophobic anticancer drug, doxorubicin (DOX), in the hydrophobic core, and the loading content was determined by UV-vis analysis to be 4 wt %. The DOX-loaded FA-DLSP micelles demonstrated a sustained release of DOX due to the hydrophobic interaction between the polymer core and the drug molecules. The hydrolytic degradation in vitro was monitored by weight loss and proton nuclear magnetic resonance spectroscopy to gain insight into the degradation mechanism of the FA-DLSP micelles. It was found that the degradation was pH-dependent and started from the hydrophilic shell gradually to the hydrophobic core. Flow cytometry and confocal microscope studies revealed that the cellular binding of the FA-DLSPhybrid against human KB cells with overexpressed folate-receptors was about twice that of the neat DLSP (without FA). The in vitro cellular cytotoxicity indicated that the FA-DLSP micelles (without DOX) had good biocompatibility with KB cells, whereas DOX-loaded micelles exhibited a similar degree of cytotoxicity against KB cells as that of free DOX. These results clearly showed that the FA-DLSP unimolecular micelles could be a promising nanosize anticancer drug carrier with excellent targeting property.
机译:叶酸官能化的可降解两亲树状星状聚合物(FA-DLSP),具有定义明确的聚(L-丙交酯)(PLLA)星形聚合物核和六个基于2,2-双(羟甲基)丙酸的亲水性聚酯树枝状分子被成功合成用作纳米级载体的癌细胞靶向药物递送。该FA-DLSP杂化物在水溶液中形成单分子胶束,平均粒径约为。通过动态光散射和透射电子显微镜确定为15 nm。为了研究FA-DLSP胶束作为靶向药物输送的潜在纳米载体的可行性,我们将疏水性抗癌药阿霉素(DOX)包裹在疏水性核中,并通过UV-vis分析确定其负载量为4 wt %。负载DOX的FA-DLSP胶束由于聚合物核心和药物分子之间的疏水相互作用而显示出DOX的持续释放。通过重量损失和质子核磁共振波谱监测体外水解降解,以深入了解FA-DLSP胶束的降解机理。发现降解是pH依赖性的,并且降解从亲水壳逐渐开始到疏水核。流式细胞仪和共聚焦显微镜研究表明,FA-DLSP杂交体与人KB细胞的细胞结合具有过量表达的叶酸受体,约为纯DLSP(不含FA)的两倍。体外细胞毒性表明,FA-DLSP胶束(不含DOX)与KB细胞具有良好的生物相容性,而负载DOX的胶束对KB细胞的细胞毒性与游离DOX相似。这些结果清楚地表明,FA-DLSP单分子胶束可能是具有良好靶向性能的有前途的纳米级抗癌药物载体。

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