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首页> 外文期刊>International Journal of Nanomedicine >pH- and Ultrasound-Responsive Paclitaxel-Loaded Carboxymethyl Chitosan Nanodroplets for Combined Imaging and Synergistic Chemoradiotherapy
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pH- and Ultrasound-Responsive Paclitaxel-Loaded Carboxymethyl Chitosan Nanodroplets for Combined Imaging and Synergistic Chemoradiotherapy

机译:用于组合成像和协同化学疗法的PH-和超声响应紫杉醇加载的羧基甲基壳聚糖纳米柱

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Background: Synergistic chemoradiotherapy (CRT) has become a primary effective curative approach for many solid cancers. However, CRT is still associated with several obstacles, including the increases in side effects and systemic toxicity. Incorporating nanocarriers into CRT is a new and exciting approach to solve these obstacles. The purpose of the present study was to design a unique pH- and ultrasound-responsive perfluoropentane-encapsulated, paclitaxel (PTX)-loaded carboxymethyl chitosan nanodroplets (NDs) for combined imaging and synergistic CRT. Materials and Methods: The NDs were prepared by a homogenization/emulsion method. Their physicochemical properties, echogenicity and biocompatibility were evaluated. PTX-loaded NDs with a high loading efficiency and encapsulation efficiency were prepared and their pH-responsive drug release profile was determined by dialysis sack method. Then, PC3 cells were exposed to (1) PTX (4 μg/mL), (2) NDs (30 μg/mL), (3) PTX-loaded NDs (34 μg/mL), (4) RT (6 Gy), (5) RT (10 Gy), (6) combination of PTX (4 μg/mL), ultrasound (0.5 W/cmsup2/sup, 30 s) and RT (6 Gy), (7) combination of NDs (30 μg/mL), ultrasound (0.5 W/cmsup2/sup, 30 s) and RT (6Gy), (8) combination of PTX-loaded NDs (30 μg/mL), ultrasound (0.5 W/cmsup2/sup, 30 s) and RT (6 Gy). 24 hrs later, CCK-8 assay, flow cytometry and migration assay were carried out to evaluate their therapeutic effects in CRT. Results: The desired NDs were successfully prepared, which were with round, spherical shapes, relatively smooth surfaces, core-shell structures and uniform in sizes ( 300 nm with PDI 0.3 when at pH≧6.0). The NDs exhibited good abilities in pH-dependent charge conversion, biocompatibility and ultrasound contrast echogenicity. The in vitro drug release from PTX-loaded NDs (the highest loading efficiency and encapsulation efficiency were 20.35% and 91.58%) was pH dependent and exhibited an initial burst followed by a sustained drug release. The results of the CCK-8 assay, flow cytometry and migration assay all showed PTX-loaded NDs combined ultrasound and RT significantly enhanced cell responses in CRT. Conclusion: The pH- and ultrasound-responsive PTX-loaded NDs, which exhibited a high echogenicity, drug delivery ability and radiosensitization ability, could be a feasible option for combined imaging and novel enhancing approach in synergistic CRT.
机译:背景:协同化学疗法(CRT)已成为许多固体癌症的主要有效治疗方法。然而,CRT仍然与几个障碍有关,包括副作用的增加和系统性毒性。将纳米载体纳入CRT是一种解决这些障碍的新的和激动人心的方法。本研究的目的是设计一种独特的pH-和超声响应的全氟化丁烷 - 包封的紫杉醇(PTX) - 加载的羧甲基壳聚糖纳米甲基纳米蛋白(NDS),用于组合成像和协同CRT。材料和方法:通过均质化/乳液法制备NDS。评估其物理化学性质,echogensity和生物相容性。制备了具有高负载效率和封装效率的PTX的ND,并通过透析袋方法测定其pH响应药物释放曲线。然后,将PC3细胞暴露于(1)PTX(4μg/ ml),(2)Nds(30μg/ ml),(3)pTx加载的Nds(34μg/ ml),(4)Rt(6 Gy ),(5)Rt(10GY),(6)PTX(4μg/ ml)的组合,超声(0.5W / cm 2 ,30 s)和室温(6 gy),( 7)Nds(30μg/ ml)的组合,超声(0.5 w / cm 2 ,30 s)和rt(6ggy),(8)组合PTX负载的Nds(30μg/ ml ),超声(0.5W / cm 2 ,30 s)和室温(6 gy)。 24小时后,CCK-8测定,流式细胞术和迁移测定进行,以评估它们在CRT中的治疗效果。结果:成功制备了所需的ND,其用圆形,球形形状,相对光滑的表面,核壳结构和尺寸均匀(当PH = 6.0时,PDI <0.3 <0.3)。 NDS在pH依赖性电荷转化,生物相容性和超声对比度回声中表现出良好的能力。来自PTX负载的NDS的体外药物释放(最高负载效率和封装效率为20.35%,91.58%)是​​pH依赖性的,并呈现初始爆发,然后持续释放药物释放。 CCK-8测定的结果,流式细胞术和迁移测定均显示出PTX负载的NDS组合超声和RT显着增强CRT中的细胞应答。结论:具有高回声的pH-和超声响应性PTX的NDS,其表现出高回声,药物递送能力和放射性化能力,可以是协同CRT中的组合成像和新型增强方法的可行选择。

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