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首页> 外文期刊>Nanotechnology >Efficacy evaluation and mechanism study on inhibition of breast cancer cell growth by multimodal targeted nanobubbles carrying AMD070 and ICG
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Efficacy evaluation and mechanism study on inhibition of breast cancer cell growth by multimodal targeted nanobubbles carrying AMD070 and ICG

机译:携带AMD070和ICG的多峰靶向纳米杆菌抑制乳腺癌细胞生长的疗效评价及机制研究

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摘要

To construct targeted nanobubbles carrying both small-molecule CXCR4 antagonist AMD070 and light-absorbing material indocyanine green (ICG), and to study their in vitro multimodal imaging, as well as their mechanism and efficacy of inhibition of breast cancer cell growth. Nanobubbles carrying AMD070 and ICG (ICG-TNBs) were constructed by carbodiimide reaction and mechanical oscillation. The physical characteristics and in vitro multimodal imaging were determined. The binding potential of ICG-TNBs to human breast cancer cells were observed by laser confocal microscopy. CCK-8 and flow cytometry were used to analyze the role of ICG-TNBs + US in inhibiting proliferation and inducing apoptosis of tumor cells. Flow cytometry and Western blotting are used to analyse the ROS generation and molecular mechanisms. ICG-TNBs had a particle size of 497.0 +/- 29.2 nm and a Zeta potential of -8.05 +/- 0.73 mV. In vitro multimodal imaging showed that the image signal intensity of ICG-TNBs increased with concentration. Targeted binding assay confirmed that ICG-TNBs could specifically bind to MCF-7 cells (CXCR4 positive), but not to MDA-MB-468 cells (CXCR4 negative). CCK-8 assay and flow cytometry analysis showed that ICG-TNBs + US could significantly inhibit the growth of MCF-7 breast cancer cells and promote their apoptosis. Flow cytometry and Western blotting showed that ICG-TNBs + US could significantly raise generation of ROS, reduce the expression of CXCR4, inhibit phosphorylation of Akt, and increase the expression of Caspase3 and Cleaved-caspase3. This indicated that ICG-TNBs could effectively inhibit and block the SDF-1/CXCR4 pathway, thus leading to the apoptosis of MCF-7 cells. ICG-TNBs can specifically bind to CXCR4 positive breast cancer cells, furthermore inhibit growth and promote apoptosis of breast cancer cells combined with ultrasonic irradiation by blocking the SDF-1/CXCR4 pathway. This study introduces a novel concept, method and mechanism for integration of targeted diagnosis and treatment of breast cancer.
机译:构建具有小分子CXCR4拮抗剂AMD070和光吸收材料吲哚菁绿(ICG)的靶向纳米泡,并研究其体外多峰成像,以及抑制乳腺癌细胞生长的机制和功效。通过碳二亚胺反应和机械振荡构建携带AMD070和ICG(ICG-TNB)的纳米蜂房。确定物理特性和体外多峰成像。通过激光共聚焦显微镜观察ICG-TNB与人乳腺癌细胞的结合潜力。 CCK-8和流式细胞术用于分析ICG-TNBS +美国抑制肿瘤细胞凋亡和诱导肿瘤细胞凋亡的作用。流式细胞术和蛋白质印迹用于分析ROS产生和分子机制。 ICG-TNB的粒径为497.0 +/- 29.2nm,Zeta电位为-8.05 +/- 0.73 mV。体外多峰成像显示ICG-TNB的图像信号强度随浓度而增加。靶向结合测定证实,ICG-TNB可以特异性结合MCF-7细胞(CXCR4阳性),但不是MDA-MB-468细胞(CXCR4阴性)。 CCK-8测定和流式细胞术分析表明,ICG-TNBS +美国可以显着抑制MCF-7乳腺癌细胞的生长并促进其凋亡。流式细胞术和Western印迹表明,ICG-TNBS + US可以显着提高ROS的产生,降低CXCR4的表达,抑制AKT的磷酸化,并增加Caspase3和Caspave-Caspase3的表达。这表明ICG-TNB可以有效地抑制并阻断SDF-1 / CXCR4途径,从而导致MCF-7细胞的凋亡。 ICG-TNB可以特异性结合CXCR4阳性乳腺癌细胞,通过阻断SDF-1 / CXCR4途径,抑制乳腺癌细胞的生长和促进乳腺癌细胞的凋亡。本研究介绍了一种新的概念,方法和机制,用于纳入乳腺癌的靶向诊断和治疗。

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