靶向CD44受体的透明质酸修饰聚合物纳米颗粒用于癌症的光/化疗联合治疗

Hyaluronan-decorated polymer nanoparticles targeting the CD44 receptor for the combined photo/chemo-therapy of cancer.

作者信息

Maiolino Sara, Moret Francesca, Conte Claudia, Fraix Aurore, Tirino Pasquale, Ungaro Francesca, Sortino Salvatore, Reddi Elena, Quaglia Fabiana

机构信息

Drug Delivery Laboratory, Department of Pharmacy, University of Napoli Federico II, Via Domenico Montesano 49, 80131, Napoli, Italy.

出版信息

Nanoscale. 2015 Mar 19;7(13):5643-53. doi: 10.1039/c4nr06910b.

Abstract

In the attempt to develop novel concepts in designing targeted nanoparticles for combination therapy of cancer, we propose here CD44-targeted hyaluronan-decorated double-coated nanoparticles (dcNPs) delivering the lipophilic chemotherapeutic docetaxel (DTX) and an anionic porphyrin (TPPS₄). dcNPs are based on electrostatic interactions between a negative DTX-loaded nanoscaffold of poly(lactide-co-glycolide), a polycationic shell of polyethyleneimine entangling negatively-charged TPPS₄ and finally decorated with hyaluronan (HA) to promote internalization through CD44 receptor-mediated endocytosis. DTX/TPPS₄-dcNPs, prepared through layer-by-layer deposition, showed a hydrodynamic diameter of around 180 nm, negative zeta potential and efficient loading of both DTX and TPPS₄. DTX/TPPS₄-dcNPs were freeze-dried with trehalose giving a powder that could be easily dispersed in different media. Excellent stability of dcNPs in specific salt- and protein-containing media was found. Spectroscopic behavior of DTX/TPPS₄-dcNPs demonstrated a face-to-face arrangement of the TPPS₄ units in non-photoresponsive H-type aggregates accounting for an extensive aggregation of the porphyrin embedded in the shell. Experiments in MDA-MB-231 cells overexpressing the CD44 receptor demonstrated a 9.4-fold increase in the intracellular level of TPPS₄ delivered from dcNPs as compared to free TPPS₄. Light-induced death increased tremendously in cells that had been treated with a combination of TPPS₄ and DTX delivered through dcNPs as compared with free drugs, presumably due to efficient uptake and co-localization inside the cells. In perspective, the strategy proposed here to target synergistic drug combinations through HA-decorated nanoparticles seems very attractive to improve the specificity and efficacy of cancer treatment.

摘要

为了在设计用于癌症联合治疗的靶向纳米颗粒方面开发新的概念,我们在此提出靶向CD44的透明质酸修饰的双涂层纳米颗粒(dcNPs),其可递送亲脂性化疗药物多西他赛(DTX)和一种阴离子卟啉(TPPS₄)。dcNPs基于聚(丙交酯-共-乙交酯)负载DTX的负性纳米支架、缠绕带负电荷的TPPS₄的聚乙烯亚胺聚阳离子壳层之间的静电相互作用,最后用透明质酸(HA)修饰以通过CD44受体介导的内吞作用促进内化。通过逐层沉积制备的DTX/TPPS₄-dcNPs显示出约180 nm的流体动力学直径、负的zeta电位以及DTX和TPPS₄的有效负载。DTX/TPPS₄-dcNPs用海藻糖冻干得到一种可轻松分散在不同介质中的粉末。发现dcNPs在特定的含盐和含蛋白质介质中具有出色的稳定性。DTX/TPPS₄-dcNPs的光谱行为表明,在非光响应性H型聚集体中TPPS₄单元呈面对面排列,这解释了嵌入壳层中的卟啉的广泛聚集。在过表达CD44受体的MDA-MB-231细胞中的实验表明,与游离TPPS₄相比,从dcNPs递送的TPPS₄的细胞内水平提高了9.4倍。与游离药物相比,在用通过dcNPs递送的TPPS₄和DTX组合处理的细胞中,光诱导死亡大幅增加,这可能是由于细胞内的有效摄取和共定位。从长远来看,这里提出的通过HA修饰的纳米颗粒靶向协同药物组合的策略对于提高癌症治疗的特异性和疗效似乎非常有吸引力。

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