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首页> 外文期刊>Biomaterials Science >Effect of increasing liver blood flow on nanodrug clearance by the liver for enhanced antitumor therapy
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Effect of increasing liver blood flow on nanodrug clearance by the liver for enhanced antitumor therapy

机译:增加肝血流量对肝脏纳米抑rug间隙进行增强抗肿瘤治疗的影响

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摘要

The clinical applications of particulate drug delivery systems have demonstrated limited treatment outcomes, which is largely attributable to the elimination of such systems by the immune system, especially in the liver. Inspired by the mechanism of nanomaterial clearance by the liver, we designed a new anticancer auxiliary delivery system by introducing norepinephrine loaded poly(acrylic acid) nanogels as angiotonics. The auxilliary system effectively decreased the liver uptake of nanodrugs by increasing the liver blood flow rate. With administration of the as-prepared norepinephrine-loaded poly(acrylic acid) nanogels, the blood perfusion amount increased significantly by 177.0% (i.e. 2.77 times) as observed directly by ultrasonic imaging, indicating an increased blood flow rate in the liver. Since the blood flow rate plays a key role in nanomaterial clearance in the liver, nanodrug clearance should be changed by modulation of the blood flow. Our in vivo experimental results clearly showed the enhancement of nanodrug efficiency with this two-step treatment, with a 52% improvement in plasma drug concentration, obvious drug accumulation in the tumor, and significant antitumor effects. These results indicate that a pre-conditioning strategy involving norepinephrine-loaded poly(acrylic acid) nanogels can serve as an ideal route for reducing nanodrug clearance by the liver.
机译:颗粒药物递送系统的临床应用已经证明了治疗结果有限,这主要是由于免疫系统消除这种系统,特别是在肝脏中。灵感来自肝脏的纳米材料间隙机理,我们通过将Norepinephrine负载的聚(丙烯酸)纳米凝胶作为血管族来设计了一种新的抗癌辅助输送系统。通过增加肝血流量,助力系统有效地降低了纳米树脂的肝脏吸收。通过施用AS制备的去甲肾上腺素负载的聚(丙烯酸)纳米凝胶,血液灌注量明显增加177.0%(即2.77次),直接通过超声成像观察到,表明肝脏中的血液流速增加。由于血流量在肝脏中的纳米材料间隙中发挥着关键作用,因此应通过调制血流来改变纳米杆间隙。我们的体内实验结果清楚地表明,这种两步处理的纳米树脂效率的提高,血浆药物浓度的提高52%,肿瘤中的药物积累明显,抗肿瘤作用显而易见。这些结果表明,涉及去甲肾上腺素负载的聚(丙烯酸)纳米凝胶的预调节策略可以作为减少肝脏纳米抑r隙间隙的理想途径。

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