微气泡
声穿孔
紫杉醇
材料科学
药物输送
生物医学工程
超声波
纳米线
医学
癌细胞
纳米颗粒
纳米技术
癌症研究
癌症
阿霉素
化疗
外科
放射科
内科学
作者
Ashkan Zandi,Mohammad Ali Khayamian,Mohammad Saghafi,Shahriar Shalileh,Pouyan Katebi,Sepanta Assadi,A. Ghanadzadeh Gilani,Mohammad Salemizadeh Parizi,Shohreh Vanaei,Mohammad Reza Esmailinejad,Fereshteh Abbasvandi,Parisa Hoseinpour,Mohammad Abdolahad
标识
DOI:10.1002/adhm.201900613
摘要
Production of local microbubbles (MBs) with dense distribution in tumor environment is achieved by developing an integrated electrochemical stimulator on a microfabricated silicon needle covered by zinc-oxide nanowires (ZnONWs). MBs are then exploded by external ultrasonic actuation, which induce microcavitations in tumor cells followed by direct entrance of anticancer drugs into cancer cells. This system, named ZnO nanowire-based microbubble generator probe (ZnONW-MGP), is tested on tumorized mice models (by MC4L2 breast cell lines). Mice treated by ZnONW-MGP have ≈82% reduction in tumor size within 10 days with just 25% of conventional dose of paclitaxel while in the absence of the system, they have just a 15% reduction in tumor size. Presence of ZnO nanostructures on microneedles strongly reduces the size of MBs and enhances the efficacy of the sonoporation.
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