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智能多肽涂层介孔 FeO 纳米颗粒:用于实体瘤的非介入性靶向栓塞/热消融及多模态成像联合治疗诊断学。

Smart-Polypeptide-Coated Mesoporous FeO Nanoparticles: Non-Interventional Target-Embolization/Thermal Ablation and Multimodal Imaging Combination Theranostics for Solid Tumors.

机构信息

Key Laboratory of Eco-functional Polymer Materials of the Ministry of Education, Key Laboratory of Eco-environmental Polymer Materials of Gansu Province, College of Chemistry and Chemical Engineering, Northwest Normal University, Lanzhou, 730070, China.

Institute of Gansu Medical Science Research, Gansu Provincial Cancer Hospital, Lanzhou, 730050, China.

出版信息

Nano Lett. 2021 Dec 22;21(24):10267-10278. doi: 10.1021/acs.nanolett.1c03340. Epub 2021 Dec 8.

Abstract

Tumor theranostics hold great potential for personalized medicine in the future, and transcatheter arterial embolization (TAE) is an important clinical treatment for unresectable or hypervascular tumors. In order to break the limitation, simplify the procedure of TAE, and achieve ideal combinatorial theranostic capability, here, a kind of triblock-polypeptide-coated perfluoropentane-loaded mesoporous FeO nanocomposites (PFP--FeO@PGTTCs) were prepared for non-interventional target-embolization, magnetic hyperthermia, and multimodal imaging combination theranostics of solid tumors. The results of systematic animal experiments by H22-tumor-bearing mice and VX2-tumor-bearing rabbits in vivo indicated that PFP--FeO@PGTTC-6.3 has specific tumor accumulation and embolization effects. The tumors' growth has been inhibited and the tumors disappeared 4 weeks and ≤15 days post-injection with embolization and magnetic hyperthermia combination therapy, respectively. The results also showed an excellent effect of magnetic resonance/ultrasound/SPECT multimodal imaging. This pH-responsive non-interventional embolization combinatorial theranostics system provides a novel embolization and multifunctional theranostic candidate for solid tumors.

摘要

肿瘤治疗学在未来的个性化医学中具有巨大的潜力,经导管动脉栓塞术(TAE)是治疗不可切除或富血管肿瘤的重要临床治疗方法。为了突破限制,简化 TAE 程序,并实现理想的组合治疗能力,本文制备了一种三嵌段多肽包裹的全氟戊烷负载介孔 FeO 纳米复合材料(PFP--FeO@PGTTCs),用于实体瘤的非介入性靶向栓塞、磁热疗和多模态成像联合治疗。通过 H22 荷瘤小鼠和 VX2 荷瘤兔的系统动物实验结果表明,PFP--FeO@PGTTC-6.3 具有特异性肿瘤积累和栓塞作用。栓塞和磁热疗联合治疗后,肿瘤的生长分别被抑制,并且在注射后 4 周和≤15 天内肿瘤消失。结果还显示出磁共振/超声/SPECT 多模态成像的优异效果。这种 pH 响应性非介入性栓塞联合治疗系统为实体瘤提供了一种新的栓塞和多功能治疗候选物。

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