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肿瘤靶向磁致发光硅纳米粒子用于体外和体内癌细胞的双模式时间门控荧光/磁共振成像。

Tumor-targetable magnetoluminescent silica nanoparticles for bimodal time-gated luminescence/magnetic resonance imaging of cancer cells in vitro and in vivo.

机构信息

State Key Laboratory of Fine Chemicals, School of Chemical Engineering, Dalian University of Technology, Dalian, 116024, PR China.

State Key Laboratory of Fine Chemicals, School of Chemical Engineering, Dalian University of Technology, Dalian, 116024, PR China.

出版信息

Talanta. 2020 Dec 1;220:121378. doi: 10.1016/j.talanta.2020.121378. Epub 2020 Jul 12.

Abstract

Bimodal photoluminescence-magnetic resonance (MR) imaging technique has attracted tremendous attention due to its great potential in biomedical researches and clinical practices. Herein a novel multifunctional magnetoluminescent nanocomposite, FA-Gd-Tb@SiO, was found to serve as an effective probe for bimodal time-gated luminescence/MR imaging of cancer cells in vitro and in vivo. The nanoprobe was designed by integrating a luminescent Tb complex, a Gd(III)-based contrast agent and a tumor-targeting molecule, folic acid (FA), into a silica nanoparticle. The integration of these functional moieties allows the nanoprobe to be employed for specific imaging of cancer cells with background-free TGL and non-invasive MR imaging modes. In addition, the optical and magnetic properties were dramatically improved after implicating the newly synthesized nanoarchitecture. In vitro cellular TGL imaging demonstrated that the FA-Gd-Tb@SiO nanoprobe could recognize and accumulate in cancer cells overexpressing FA receptor. Furthermore, in vivo study revealed that the as-prepared nanoprobe was able to effectively enhance T-weighted MR contrast and TGL intensity in tumor tissue, which might contribute to the precise detection and tracing of cancer cells, as well as diagnosis and therapy of tumor in clinical.

摘要

双模态光致发光-磁共振(MR)成像是一种极具潜力的生物医学研究和临床应用技术,受到了广泛关注。本文报道了一种新型多功能磁光纳米复合材料 FA-Gd-Tb@SiO2,可作为体外和体内癌细胞双模态时间门控发光/MR 成像的有效探针。该纳米探针通过将发光 Tb 配合物、基于 Gd(III)的造影剂和肿瘤靶向分子叶酸(FA)整合到二氧化硅纳米颗粒中而设计。这些功能基团的整合允许纳米探针以无背景的 TGL 和非侵入性的 MR 成像模式特异性地成像癌细胞。此外,新合成的纳米结构使光学和磁学性能得到了显著改善。体外细胞 TGL 成像表明,FA-Gd-Tb@SiO2 纳米探针能够识别并在过表达 FA 受体的癌细胞中积累。此外,体内研究表明,所制备的纳米探针能够有效地增强肿瘤组织中的 T 加权 MR 对比和 TGL 强度,这可能有助于癌症细胞的精确检测和追踪,以及肿瘤的诊断和治疗。

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