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A Novel Micelle-Forming Material Used for Preparing a Theranostic Vehicle Exhibiting Enhanced in Vivo Therapeutic Efficacy

机译:一种新型胶束形成材料,用于制备具有体内治疗功效的治疗性载具

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A new micelle-forming material, folic acid-conjugated carboxymethyl lauryl chitosan (FA-CLC), and superparamagnetic iron oxide (SPIO) nanoparticles were used for preparing an imaging-guided drug vehicle (the FA-CLC/SPIO hybrid micelle) that demonstrates targeted delivery, imaging, and controlled release of hydrophobic agents. We found that the ratio of viable normal cells to tumor cells was increased prominently after delivery of camptothecin (CPT)-loaded FA-CLC/SPIO micelles and therapeutic sonication. In addition, a magnetic field could enhance the tumor-targeting effect of FA-CLC/SPIO micelles. Therefore, after sequential administration of magnetic attraction to CPT-loaded FA-CLC/SPIO micelles, and therapeutic sonication, the in vivo therapeutic efficacy of CPT was markedly enhanced. However, a nonfocused magnetic field could enhance the undesirable accumulation of iron-containing vehicles in the liver if the tumor (i.e., magnetic attraction site) is near the liver. We propose that magnetic attraction must be carefully applied, far from the liver.
机译:一种新的胶束形成材料,叶酸共轭的羧甲基月桂基壳聚糖(FA-CLC)和超顺磁性氧化铁(SPIO)纳米颗粒用于制备成像引导的药物载体(FA-CLC / SPIO混合胶束),可证明疏水剂的靶向递送,成像和控制释放。我们发现,载有喜树碱(CPT)的FA-CLC / SPIO胶束和治疗性超声处理后,存活的正常细胞与肿瘤细胞的比例显着增加。另外,磁场可以增强FA-CLC / SPIO胶束的肿瘤靶向作用。因此,在对加载有CPT的FA-CLC / SPIO胶束进行磁吸引和治疗性超声处理之后,CPT的体内治疗功效显着增强。但是,如果肿瘤(即,磁吸引部位)在肝脏附近,则非聚焦磁场会增强肝脏中含铁载体的不希望的积累。我们建议必须小心地将磁引力远离肝脏。

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