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介导癌细胞摄取的命运:具有生物素和叶酸表面配体的双靶向磁性纳米载体

Mediating the Fate of Cancer Cell Uptake: Dual-Targeted Magnetic Nanovectors with Biotin and Folate Surface Ligands.

作者信息

Ilyas Shaista, Ullah Nighat K, Ilyas Muhammad, Wennhold Kerstin, Iqbal Maria, Schlößer Hans A, Hussain Muhammad S, Mathur Sanjay

机构信息

Institute of Inorganic Chemistry, University of Cologne, Greinstraße 6, 50939 Cologne, Germany.

Professorship for Population Genetics, Department of Life Science Systems, Technical University of Munich, Liesel-Beckmann Straße 2, 85354 Freising, Germany.

出版信息

ACS Biomater Sci Eng. 2020 Nov 9;6(11):6138-6147. doi: 10.1021/acsbiomaterials.0c00771. Epub 2020 Oct 22.

Abstract

Recognition of folate and biotin surface receptors by dual-functionalized nanoparticles (NPs) is key for site-selective receptor-mediated transport of anticancer drugs to cancer cells. We present here dopamine-capped iron oxide nanoprobes (FeO, 10 ± 2 nm) containing two surface-grafted biologically relevant ligands, namely, folic acid (FA) and biotin (BT). The covalent attachment of both FA and BT on FeO nanoparticles was achieved by following carbodiimide coupling and click-chemistry protocols. The dual-function FeO probes were delivered into E-G7 and human HeLa cancer cell lines and tested toward their cellular uptake by immunofluorescence and flow cytometry analysis. Owing to receptor-mediated endocytosis, enhanced accumulation of nanoprobes in cancer cells was successfully monitored by confocal laser microscopy. When compared to dual-function probes, single-functionalized nanoparticles possessing either FA or BT ligands showed significantly reduced uptake in the tested cell lines, underlining the superior interaction potential of dual-purpose probes. A time-dependent receptor-mediated endocytosis of FA-FeO-BT nanovectors was demonstrated by flow cytometry analysis, whereas the unfunctionalized NPs did not show any specificity in terms of uptake. Besides their specific uptake, the surface-functionalized nanoparticles exhibited promising cytotoxicity profiles by demonstrating good viability of more than 95% with analogous cancer cell lines. Our results demonstrate that dual and/or multivariate conjugation of receptor-specific ligands on NPs is highly effective in molecular recognition of surface biomarkers that enhances their potential in anticancer treatment for pretargeting-radio strategies based on biotin/avidin interactions.

摘要

双功能化纳米颗粒(NPs)对叶酸和生物素表面受体的识别是抗癌药物通过受体介导的位点选择性转运至癌细胞的关键。我们在此展示了多巴胺包覆的氧化铁纳米探针(FeO,10±2 nm),其含有两种表面接枝的生物相关配体,即叶酸(FA)和生物素(BT)。通过遵循碳二亚胺偶联和点击化学方案,实现了FA和BT在FeO纳米颗粒上的共价连接。将双功能FeO探针递送至E-G7和人HeLa癌细胞系,并通过免疫荧光和流式细胞术分析测试其细胞摄取情况。由于受体介导的内吞作用,通过共聚焦激光显微镜成功监测到纳米探针在癌细胞中的积累增强。与双功能探针相比,仅含有FA或BT配体的单功能化纳米颗粒在测试细胞系中的摄取显著降低,突出了双功能探针卓越的相互作用潜力。流式细胞术分析证实了FA-FeO-BT纳米载体存在时间依赖性的受体介导内吞作用,而未功能化的NPs在摄取方面未显示任何特异性。除了其特异性摄取外,表面功能化纳米颗粒通过在类似癌细胞系中显示超过95%的良好存活率,展现出有前景的细胞毒性特征。我们的结果表明,在NPs上对受体特异性配体进行双功能和/或多变量共轭在表面生物标志物的分子识别中非常有效,增强了它们在基于生物素/抗生物素蛋白相互作用的预靶向放射策略的抗癌治疗中的潜力。

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