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热敏声敏液滴用于双模超声成像和药物递送。

Thermal-sensitive acoustic droplets for dual-mode ultrasound imaging and drug delivery.

机构信息

Department of Biomedical Engineering and Environmental Sciences, National Tsing Hua University, Hsinchu, Taiwan.

Department of Biomedical Engineering and Environmental Sciences, National Tsing Hua University, Hsinchu, Taiwan.

出版信息

J Control Release. 2018 Dec 10;291:26-36. doi: 10.1016/j.jconrel.2018.10.016. Epub 2018 Oct 15.

Abstract

Mild hyperthermia (40-43 °C) could assist with acoustic droplet vaporization (ADV) via focused ultrasound heating and enable ultrasound thermal imaging to monitor the heating position. We explored the possibility of predicting the treatment position of ADV using thermal-sensitive droplets (TSDs) and ultrasound thermal imaging. The TSDs were created with an encapsulated mixture of CF and CF that could be vaporized by ultrasound under mild hyperthermia. The ultrasound imaging-guided high-intensity focused ultrasound system was used to collect ultrasound images, heat tumors, and vaporize the TSDs. The overlap between the location of heating and ADV-induced bubble formation was used to evaluate the accuracy of predicting the treatment position. The optimal fabrication of TSDs (1.21 ± 0.19 μm, volume ratio of CF:CF = 7:3) increased ADV efficiency by 33 ± 11% at 41 °C under an acoustic pressure of 8.6 MPa. The accuracy of ADV region prediction by ultrasound thermal imaging was 87.2 ± 3.5% for the in vitro study and 83.2 ± 8.6% for the in vivo study. The similarity among the location of bubble enhancement and distribution of 41 °C areas demonstrated the credibility of our estimates. Therefore, in this study, we validated the feasibility of applying TSDs and ultrasound thermal imaging to predict the in vivo treatment position of ADV.

摘要

轻度热疗(40-43°C)可通过聚焦超声加热辅助声击穿技术(ADV),并利用超声热成像来监测加热位置。我们探索了使用热敏液滴(TSDs)和超声热成像来预测 ADV 治疗位置的可能性。TSDs 由 CF 和 CF 的封装混合物制成,在轻度热疗下可通过超声蒸发。采用超声成像引导的高强度聚焦超声系统采集超声图像、加热肿瘤并蒸发 TSDs。通过比较加热位置和 ADV 诱导的气泡形成的重叠情况,评估预测治疗位置的准确性。优化后的 TSDs (1.21±0.19μm,CF:CF 体积比为 7:3)在 41°C 下、声压为 8.6MPa 时,可将 ADV 效率提高 33±11%。体外研究中,超声热成像预测 ADV 区域的准确性为 87.2±3.5%,体内研究中为 83.2±8.6%。气泡增强位置和 41°C 区域分布的相似性证明了我们的预测是可信的。因此,在本研究中,我们验证了 TSDs 和超声热成像在预测 ADV 体内治疗位置方面的可行性。

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