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Incorporation of a selective sigma-2 receptor ligand enhances uptake of liposomes by multiple cancer cells

机译:掺入选择性sigma-2受体配体可增强多种癌细胞对脂质体的吸收

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摘要

Background: The sigma-2 receptor is an attractive target for tumor imaging and targeted therapy because it is overexpressed in multiple types of solid tumors, including prostate cancer, breast cancer, and lung cancer. SV119 is a synthetic small molecule that binds to sigma-2 receptors with high affinity and specificity. This study investigates the utility of SV119 in mediating the selective targeting of liposomal vectors in various types of cancer cells. Methods: SV119 was covalently linked with polyethylene glycol-dioleyl amido aspartic acid conjugate (PEG-DOA) to generate a novel functional lipid, SV119-PEG-DOA. This lipid was utilized for the preparation of targeted liposomes to enhance their uptake by cancer cells. Liposomes with various SV119 densities (0, 1, 3, and 5 mole%) were prepared and their cellular uptake was investigated in several tumor cell lines. In addition, doxorubicin (DOX) was loaded into the targeted and unmodified liposomes, and the cytotoxic effect on the DU-145 cells was evaluated by MTT assay. Results: Liposomes with or without SV119-PEG-DOA both have a mean diameter of approximately 90 nm and a neutral charge. The incorporation of SV119-PEG-DOA significantly increased the cellular uptake of liposomes by the DU-145, PC-3, A549, 201T, and MCF-7 tumor cells, which was shown by fluorescence microscopy and the quantitative measurement of fluorescence intensity. In contrast, the incorporation of SV119 did not increase the uptake of liposomes by the normal BEAS-2B cells. In a time course study, the uptake of SV119 liposomes by DU-145 cells was also significantly higher at each time point compared to the unmodified liposomes. Furthermore, the DOX-loaded SV119 liposomes showed significantly higher cytotoxicity to DU-145 cells compared to the DOX-loaded unmodified liposomes. Conclusion: SV119 liposomes were developed for targeted drug delivery to cancer cells. The targeting efficiency and specificity of SV119 liposomes to cancer cells was demonstrated in vitro. The results of this study suggest that SV119-modified liposomes might be a promising drug carrier for tumor-targeted delivery. © 2012 Zhang et al, publisher and licensee Dove Medical Press Ltd.
机译:背景:sigma-2受体是肿瘤成像和靶向治疗的有吸引力的靶标,因为它在多种类型的实体瘤(包括前列腺癌,乳腺癌和肺癌)中过表达。 SV119是合成的小分子,以高亲和力和特异性与sigma-2受体结合。这项研究调查了SV119在介导各种类型的癌细胞中脂质体载体的选择性靶向中的效用。方法:将SV119与聚乙二醇-烯丙基酰胺基天冬氨酸共轭物(PEG-DOA)共价连接,生成新的功能脂质SV119-PEG-DOA。该脂质用于制备靶向脂质体以增强癌细胞对它们的摄取。制备了具有各种SV119密度(0、1、3和5摩尔%)的脂质体,并在几种肿瘤细胞系中研究了它们的细胞摄取。另外,将阿霉素(DOX)装载到靶向的和未修饰的脂质体中,并通过MTT测定评估对DU-145细胞的细胞毒性作用。结果:具有或不具有SV119-PEG-DOA的脂质体均具有约90 nm的平均直径和中性电荷。 SV119-PEG-DOA的掺入显着增加了DU-145,PC-3,A549、201T和MCF-7肿瘤细胞对脂质体的细胞摄取,这通过荧光显微镜和荧光强度的定量测量得以显示。相反,掺入SV119不会增加正常BEAS-2B细胞对脂质体的摄取。在时间过程研究中,与未修饰的脂质体相比,DU-145细胞在每个时间点对SV119脂质的摄取也显着更高。此外,与未加DOX的未修饰脂质体相比,已加DOX的SV119脂质体对DU-145细胞显示出明显更高的细胞毒性。结论:开发了SV119脂质体,用于靶向药物向癌细胞的递送。体外证明了SV119脂质体对癌细胞的靶向效率和特异性。这项研究的结果表明,SV119修饰的脂质体可能是有希望的肿瘤靶向递送的药物载体。 ©2012 Zhang等人,出版商和被许可人道夫医疗出版社。

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