磁性介孔栓塞微球在肝癌经导管动脉化疗栓塞中的应用

Li Liu, Xianxian Liang, Xiangxian Xu, Xiang Zhang, Jun Wen, Kun Chen, Xiaodan Su, Zhaogang Teng, Guangming Lu, Jian Xu
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引用次数: 11

摘要

经导管动脉化疗栓塞(TACE)是肝癌的主要治疗方法。虽然许多栓塞剂已被用于TACE,但结合栓塞、载药和成像特性的栓塞剂尚未构建。在此,我们报道了一种新的磁性介孔栓塞微球,它可以同时装载阿霉素(Dox),阻塞血管,并通过磁共振成像(MRI)观察。用介孔有机二氧化硅微粒(PS/Fe3O4@MONs)修饰磁性聚苯乙烯/Fe3O4颗粒制备微球。PS/Fe3O4@MONs呈均匀球形,尺寸大(50 μm),比表面积高,介孔均匀,载Dox能力为460.8 μg mg-1。负载dox的PS/Fe3O4@MONs (PS/Fe3O4@MON@Dox)有效抑制肝癌细胞生长。建立VX2兔肝肿瘤模型,研究PS/Fe3O4@MON@Dox对TACE的作用。在体内,PS/Fe3O4@MON@Dox可以通过动脉导管顺利输送,实现化疗栓塞。MRI可区分PS/Fe3O4@MON@Dox和残余肿瘤实质,对评价TACE疗效具有重要意义。组织病理学显示,PS/Fe3O4@MON@Dox可沉积在肿瘤血管中,完全阻断血液供应。总体而言,PS/Fe3O4@MON@Dox表现出良好的载药、栓塞和成像性能,以及在TACE中的应用潜力。意义声明:经导管动脉化疗栓塞(TACE)是肝癌的主要治疗方法。虽然许多栓塞剂已被用于TACE,但结合栓塞、载药和成像特性的栓塞剂尚未构建。在这项工作中,我们制备了磁性介孔微球作为一种新的栓塞剂,可以同时加载阿霉素(Dox),阻塞血管并实现磁共振成像。总的来说,这种新的栓塞微球介导肝癌TACE策略显示出良好的治疗效果,PS/Fe3O4@MON@Dox栓塞微球为提高肝癌TACE疗效和术后评价提供了新的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Magnetic Mesoporous Embolic Microspheres in Transcatheter Arterial Chemoembolization for Liver Cancer
Transcatheter arterial chemoembolization (TACE) is the main treatment for liver cancer. Although many embolic agents have been exploited in TACE, embolic agents combining embolization, drug loading, and imaging properties have not yet been constructed. Herein, we report a new magnetic mesoporous embolic microsphere that can simultaneously be loaded with doxorubicin (Dox), block vessels, and be observed by magnetic resonance imaging (MRI). The microspheres were prepared by decorating magnetic polystyrene/Fe3O4 particles with mesoporous organosilica microparticles (denoted as PS/Fe3O4@MONs). The PS/Fe3O4@MONs were uniformly spherical and large (50 μm), with a high specific surface area, uniform mesopores, and a Dox loading capacity of 460.8 μg mg-1. Dox-loaded PS/Fe3O4@MONs (PS/Fe3O4@MON@Dox) effectively inhibited liver cancer cell growth. A VX2 rabbit liver tumor model was constructed to study the efficacy of TACE with PS/Fe3O4@MON@Dox. In vivo, PS/Fe3O4@MON@Dox could be smoothly delivered through an arterial catheter to achieve chemoembolization. Moreover, PS/Fe3O4@MON@Dox and residual tumor parenchyma could be distinguished on MRI, which is of great significance for evaluating the efficacy of TACE. Histopathology showed that PS/Fe3O4@MON@Dox could be deposited in the tumor vessels, completely blocking the blood supply. Overall, PS/Fe3O4@MON@Dox showed good drug loading, embolization and imaging performance as well as potential for use in TACE. STATEMENT OF SIGNIFICANCE: : Transcatheter arterial chemoembolization (TACE) is the main treatment for liver cancer. Although many embolic agents have been exploited in TACE, embolic agents combining embolization, drug-loading, and imaging properties have not yet been constructed. In this work, we prepared magnetic mesoporous microspheres as a new embolic agent that can simultaneously load doxorubicin (Dox), block blood vessels and enable magnetic resonance imaging. Overall, this new embolic microsphere-mediated TACE strategy for liver cancer showed good therapeutic effects, and the PS/Fe3O4@MON@Dox embolic microspheres provide a new avenue for improving the efficacy of TACE for liver cancer and postoperative evaluation.
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