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首页> 外文期刊>RSC Advances >Enhanced ultrasound imaging and anti-tumor in vivo properties of Span–polyethylene glycol with folic acid–carbon nanotube–paclitaxel multifunctional microbubbles
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Enhanced ultrasound imaging and anti-tumor in vivo properties of Span–polyethylene glycol with folic acid–carbon nanotube–paclitaxel multifunctional microbubbles

机译:Span-聚乙二醇与叶酸-碳纳米管-紫杉醇多功能微泡的增强超声成像和体内抗肿瘤特性

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With Span and polyethylene glycol (PEG) as the membrane material, the as-prepared folate–carbon nanotube–paclitaxel (FA–CNT–PTX) complex was added to the reaction system under sound vibration cavitation and Span–PEG with FA–CNT–PTX microbubbles was obtained. The maximum tolerating dose of the obtained composite microbubbles on Kunming mice was determined by acute toxicity test. Utilizing the breast cancer tumor model in the nude mice to assess the anti-tumor activity in vivo , the inhibition effect of the composite microbubbles on tumor growth was analyzed by recording the weight and tumor volume of the nude mice. HE staining observations, the immunohistochemistry method, and TUNEL were, respectively, used to examine the inhibition effect of the composite microbubbles on breast cancer tumors in the nude mice. The ultrasound imaging effects and the changes in the peak intensities of the composite microbubbles were inspected using a Doppler color ultrasound imaging system. The experimental results showed that the maximum tolerated dose of the composite microbubbles was 3500 mg kg ~(?1) , indicating that the composite microbubbles had low toxicity and good biocompatibility. The composite microbubbles could reach the breast cancer tumor via a targeting factor, and then hindered the tumor growth by inhibiting the proliferation of tumor cells and inducing apoptosis of the tumor cells. The composite microbubbles contributed toward enhancing the ultrasound signal and improved the resolution of the ultrasound images and extended the imaging time. Also, the addition of CNTs in the composite microbubbles could enhance the ultrasound contrast. Simultaneously, the peak intensity at the tumor was significantly reduced after the treatment.
机译:以Span和聚乙二醇(PEG)为膜材料,在声振动空化条件下将制得的叶酸-碳纳米管-紫杉醇(FA-CNT-PTX)复合物添加到反应体系中,并使用FA-CNT-Span-PEG获得PTX微泡。通过急性毒性试验确定所得复合微泡在昆明小鼠上的最大耐受剂量。利用裸鼠的乳腺癌肿瘤模型评估其体内抗肿瘤活性,通过记录裸鼠的体重和肿瘤体积,分析了复合微泡对肿瘤生长的抑制作用。 HE染色观察,免疫组织化学方法和TUNEL分别用于检查复合微泡对裸鼠乳腺癌肿瘤的抑制作用。使用多普勒彩色超声成像系统检查超声成像效果和复合微泡的峰强度变化。实验结果表明,该复合微泡的最大耐受剂量为3500mg kg·(?1),表明该复合微泡毒性低,生物相容性好。复合微泡可以通过靶向因子到达乳腺癌肿瘤,然后通过抑制肿瘤细胞的增殖并诱导肿瘤细胞的凋亡来阻碍肿瘤的生长。复合微泡有助于增强超声信号并改善超声图像的分辨率并延长成像时间。同样,在复合微泡中添加CNT可以增强超声对比度。同时,治疗后肿瘤的峰值强度明显降低。

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