首页> 外文期刊>International Journal of Nanomedicine >Preparation and Evaluation of Doxorubicin-Loaded PLA–PEG–FA Copolymer Containing Superparamagnetic Iron Oxide Nanoparticles (SPIONs) for Cancer Treatment: Combination Therapy with Hyperthermia and Chemotherapy
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Preparation and Evaluation of Doxorubicin-Loaded PLA–PEG–FA Copolymer Containing Superparamagnetic Iron Oxide Nanoparticles (SPIONs) for Cancer Treatment: Combination Therapy with Hyperthermia and Chemotherapy

机译:含有超顺磁性氧化铁纳米粒子(酱)的多柔比蛋白加载PLA-PEG-FA共聚物的制备及评价用于癌症治疗:具有高温和化疗的联合治疗

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Background: Among the novel cancer treatment strategies, combination therapy is a cornerstone of cancer therapy. Materials and Methods: Here, combination therapy with targeted polymer, magnetic hyperthermia and chemotherapy was presented as an effective therapeutic technique. The DOX-loaded PLA–PEG–FA magnetic nanoparticles (nanocarrier) were prepared via a double emulsion method. The nanocarriers were characterized by particle size, zeta potential, morphology, saturation magnetizations and heat generation capacity, and the encapsulation efficiency, drug content and in-vitro drug release for various weight ratios of PLA:DOX. Then, cytotoxicity, cellular uptake and apoptosis level of nanocarrier-treated cells for HeLa and CT26 cells were investigated by MTT assay, flow cytometry, and apoptosis detection kit. Results and Conclusions: The synthesized nanoparticles were spherical in shape, had low aggregation and considerable magnetic properties. Meanwhile, the drug content and encapsulation efficiency of nanoparticles can be achieved by varying the weight ratios of PLA:DOX. The saturation magnetizations of nanocarriers in the maximum applied magnetic field were 59/447 emu/g and 28/224 emu/g, respectively. Heat generation capacity of MNPs and nanocarriers were evaluated in the external AC magnetic field by a hyperthermia device. The highest temperature, 44.2°C, was measured in the nanocarriers suspension at w/w ratio 10:1 (polymer:DOX weight ratio) after exposed to the magnetic field for 60 minutes. The encapsulation efficiency improved with increasing polymer concentration, since the highest DOX encapsulation efficiency was related to the nanocarriers’ suspension at w/w ratio 50:1 (79.6 ± 6.4%). However, the highest DOX loading efficiency was measured in the nanocarriers’ suspension at w/w ratio 10:1 (5.14 ± 0.6%). The uptake efficiency and apoptosis level of nanocarrier-treated cells were higher than those of nanocarriers (folic acid free) and free DOX-treated cells in both cell lines. Therefore, this targeted nanocarrier may offer a promising nanosystem for cancer-combined chemotherapy and hyperthermia.
机译:背景:在新型癌症治疗策略中,联合治疗是癌症治疗的基石。材料和方法:这里,用靶向聚合物,磁热热性和化疗的组合治疗作为一种有效的治疗技术。 DOX加载的PLA-PEG-FA磁性纳米颗粒(纳米载体)通过双乳液法制备。纳米载体的特征在于粒度,Zeta电位,形态,饱和磁化和发热容量,以及用于PLA的各种重量比的封装效率,药物含量和体外药物释放:DOX。然后,通过MTT测定,流式细胞术和凋亡检测试剂盒研究了Hela和CT26细胞的纳米载体处理细胞的细胞毒性,细胞摄取和凋亡水平。结果和结论:合成的纳米颗粒以球形为球形,具有低聚集和相当大的磁性。同时,通过改变PLA的重量比来实现纳米颗粒的药物含量和包封效率:DOX。最大施加磁场中纳米载波的饱和磁化分别为59/447 emu / g和28/224 emu / g。通过热疗装置在外部交流磁场中评估MnP和纳米载体的发热能力。在暴露于磁场之后,在纳米载体悬浮液中测量最高温度44.2℃,在纳米载体悬浮液中测量60分钟。封装效率随着聚合物浓度的增加而改善,因为最高的DOX封装效率与W / W比50:1(79.6±6.4%)的纳米载体悬浮液有关。然而,在W / W比例10:1(5.14±0.6%)下测量最高DOX加载效率。纳米载波处理细胞的摄取效率和凋亡水平高于两种细胞系中纳米载体(无叶酸)和自由DOX处理细胞的摄影效率和细胞凋亡水平。因此,该靶向纳米载波可以为癌症合并化疗和热疗提供有前途的纳米系统。

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