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吲哚菁绿-全氟己基硫醇修饰转铁蛋白纳米组装体用于脑胶质瘤的肿瘤靶向双模态成像与光热治疗

Indocyanine Green-holo-Transferrin Nanoassemblies for Tumor-Targeted Dual-Modal Imaging and Photothermal Therapy of Glioma.

机构信息

Key Laboratory of Medicinal Resources and Natural Pharmaceutical Chemistry, Ministry of Education, College of Life Sciences, Shaanxi Normal University , Xi'an 710119, China.

Paul C. Lauterbur Research Center for Biomedical Imaging, Institute of Biomedical and Health Engineering, Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences , Shenzhen 518055, China.

出版信息

ACS Appl Mater Interfaces. 2017 Nov 15;9(45):39249-39258. doi: 10.1021/acsami.7b14076. Epub 2017 Oct 31.

Abstract

Active-targeted cancer imaging and therapy of glioma has attracted much attention in theranostic nanomedicine. As a promising tumor-targeting ligand, holo-transferrin (holo-Tf) has been applied for enhancing delivery of nanotheranostics. However, holo-Tf-based nanoassemblies for active targeting mediated multimodal imaging and therapeutics have not been previously reported. Here, we develop a one-step method for the preparation of holo-Tf-indocyanine green (holo-Tf-ICG) nanoassemblies for fluorescence (FL) and photoacoustic (PA) dual-modal imaging and photothermal therapy (PTT) of glioma. The nanoassemblies are formed by hydrophobic interaction and hydrogen bonds between holo-Tf and ICG, which exhibit excellent active tumor-targeting and high biocompability. The brain tumor with highly expressed Tf receptor can be clearly observed with holo-Tf-ICG nanoassemblies base on FL and PA dual-modal imaging in subcutaneous and orthotopic glioma models. Under the near-infrared laser irradiation, the holo-Tf-ICG nanoassemblies accumulated in tumor regions can efficiently convert laser energy into hyperthermia for tumor ablation. The novel theranostic nanoplatform holds great promise for precision diagnosis and treatment of glioma.

摘要

主动靶向癌症成像和治疗胶质瘤在治疗性纳米医学中受到了广泛关注。作为一种很有前途的肿瘤靶向配体,全转铁蛋白(holo-Tf)已被用于增强纳米治疗剂的递送。然而,基于 holo-Tf 的纳米组装体用于主动靶向介导的多模式成像和治疗尚未见报道。在这里,我们开发了一种一步法制备全转铁蛋白-吲哚菁绿(holo-Tf-ICG)纳米组装体,用于荧光(FL)和光声(PA)双模式成像和光热治疗(PTT)胶质瘤。纳米组装体通过 holo-Tf 和 ICG 之间的疏水相互作用和氢键形成,表现出优异的主动肿瘤靶向性和高生物相容性。具有高表达 Tf 受体的脑肿瘤可以通过皮下和原位胶质瘤模型中基于 FL 和 PA 双模式成像的 holo-Tf-ICG 纳米组装体清楚地观察到。在近红外激光照射下,肿瘤部位积聚的 holo-Tf-ICG 纳米组装体可以有效地将激光能量转化为热疗以消融肿瘤。这种新型治疗性纳米平台有望用于胶质瘤的精确诊断和治疗。

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