Thayer School of Engineering, Dartmouth College, 15 Thayer Drive, Hanover, NH 03755, United States.
Thayer School of Engineering, Dartmouth College, 15 Thayer Drive, Hanover, NH 03755, United States; Translational Engineering in Cancer Research Program, Dartmouth Cancer Center, 1 Medical Center Drive, Lebanon, NH 03766, United States.
Ultrasonics. 2023 Aug;133:107056. doi: 10.1016/j.ultras.2023.107056. Epub 2023 May 26.
Phase-changing nanodroplets are nanometric sized constructs that can be vaporized via external stimuli, such as focused ultrasound, to generate gaseous bubbles that are visible in ultrasound. Their activation can also be leveraged to release their payload, creating a method for ultrasound-modulated localized drug delivery. Here, we develop a perfluoropentane core nanodroplet that can simultaneously load paclitaxel and doxorubicin, and release them in response to an acoustic trigger. A double emulsion method is used to incorporate the two drugs with different physio-chemical properties, which allows for a combinatorial chemotherapy regimen to be used. Their loading, release, and biological effects on a triple negative breast cancer mouse model are investigated. We show that activation enhances the drug-delivery effect and delays the tumor growth rate in vivo. Overall, the phase-changing nanodroplets are a useful platform to allow on-demand delivery of combinations of drugs.
相变型纳米液滴是纳米级大小的构建体,可以通过外部刺激(如聚焦超声)蒸发,产生可见的超声气泡。它们的激活也可以用来释放其有效载荷,从而创造一种超声调制的局部药物输送方法。在这里,我们开发了一种全氟戊烷核纳米液滴,它可以同时负载紫杉醇和阿霉素,并在声触发下释放它们。使用双重乳液法将两种具有不同物理化学性质的药物结合在一起,从而可以使用组合化疗方案。研究了它们在三阴性乳腺癌小鼠模型中的加载、释放和生物学效应。我们表明,激活增强了药物输送效果,并在体内延迟了肿瘤生长速度。总的来说,相变型纳米液滴是一种有用的平台,可以按需输送组合药物。