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用于头颈部癌症磁共振引导激光烧蚀的靶向多功能金纳米壳。

Targeted multifunctional gold-based nanoshells for magnetic resonance-guided laser ablation of head and neck cancer.

机构信息

Department of Imaging Physics, The University of Texas MD Anderson Cancer Center, Houston, TX 77030, USA.

出版信息

Biomaterials. 2011 Oct;32(30):7600-8. doi: 10.1016/j.biomaterials.2011.06.039. Epub 2011 Jul 13.

Abstract

Image-guided thermal ablation of tumors is becoming a more widely accepted minimally invasive alternative to surgery for patients who are not good surgical candidates, such as patients with advanced head and neck cancer. In this study, multifunctional superparamagnetic iron oxide coated with gold nanoshell (SPIO@Au NS) that have both optical and magnetic properties was conjugated with the targeting agent, C225 monoclonal antibody, against epidermal growth factor receptor (EGFR). C225-SPIO@Au NS have an average a diameter of 82 ± 4.4 nm, contain 142 ± 15 antibodies per nanoshell, have an absorption peak in the near infrared (~800 nm), and have transverse relaxivity (r(2)) of 193 and 353 mM(-1) s(-1) versus Feridex™ of 171 and 300 mM(-1) s(-1), using 1.5 T and 7 T MR scanners, respectively. Specific targeting of the synthesized C225-SPIO@Au NS was tested in vitro using A431 cells and oral cancer cells, FaDu, OSC19, and HN5, all of which overexpress EGFR. Selective binding was achieved using C225-SPIO@Au NS but not with the non-targeting PEG-SPIO@Au NS and blocking group (excess of C225 + C225-SPIO@Au NS). In vivo biodistribution on mice bearing A431 tumors also showed selective targeting of C225-SPIO@Au NS compared with the non-targeting and blocking groups. The selective photothermal ablation of the nanoshells shows that without laser treatment there were no cell death and among the groups that were treated with laser at a power of 36 W/cm(2) for 3 min, only the cells treated with C225-SPIO@Au NS had cell killing (p < 0.001). In summary, successful synthesis and characterization of targeted C225-SPIO@Au NS demonstrating both superparamagnetic and optical properties has been achieved. We have shown both in vitro and in vivo that these nanoshells are MR-active and can be selectively heated up for simultaneous imaging and photothermal ablation therapy.

摘要

图像引导下的肿瘤热消融技术正在成为一种越来越被广泛接受的微创替代方法,适用于手术不适合的患者,如晚期头颈部癌症患者。在这项研究中,多功能超顺磁性氧化铁纳米壳(SPIO@Au NS)具有光学和磁性两种特性,与针对表皮生长因子受体(EGFR)的靶向剂 C225 单克隆抗体偶联。C225-SPIO@Au NS 的平均直径为 82±4.4nm,每个纳米壳含有 142±15 个抗体,在近红外区(~800nm)有吸收峰,在 1.5T 和 7T MRI 扫描仪中,横向弛豫率(r(2))分别为 193 和 353mM(-1)s(-1),而 Feridex™ 的 r(2)分别为 171 和 300mM(-1)s(-1)。在体外使用 A431 细胞和口腔癌细胞 FaDu、OSC19 和 HN5 测试合成的 C225-SPIO@Au NS 的特异性靶向,所有这些细胞都过度表达 EGFR。使用 C225-SPIO@Au NS 实现了选择性结合,但非靶向 PEG-SPIO@Au NS 和阻断组(过量的 C225+C225-SPIO@Au NS)则没有。在携带 A431 肿瘤的小鼠体内的生物分布也显示,与非靶向和阻断组相比,C225-SPIO@Au NS 具有选择性靶向。纳米壳的选择性光热消融表明,在没有激光治疗的情况下没有细胞死亡,而在以 36W/cm(2)功率进行 3 分钟激光治疗的各组中,只有用 C225-SPIO@Au NS 处理的细胞才有细胞杀伤(p<0.001)。总之,成功合成并表征了具有超顺磁性和光学特性的靶向 C225-SPIO@Au NS。我们已经在体外和体内证明,这些纳米壳具有磁共振活性,可以选择性地加热以进行同时成像和光热消融治疗。

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