首页> 外文会议>IEEE International Ultrasonics Symposium >Incubation Method for Loading Lonidamine in Oxygen Microbubbles for Targeted Drug Delivery
【24h】

Incubation Method for Loading Lonidamine in Oxygen Microbubbles for Targeted Drug Delivery

机译:在氧气微泡中装载洛尼达明用于靶向药物递送的培养方法

获取原文

摘要

Lonidamine (LND) has been widely explored due to its ability to target metabolic glycolysis and mitochondrial respiration in tumors [4]. However, clinical translation has stalled due to poor bioavailability after oral administration. In this study, we explored three incubation time points of loading oxygen-filled microbubbles with LND (SE61O2-LND) for radiotherapy sensitization by modifying our published methods for creating surfactant-shelled oxygen microbubbles (SE61 O2). Acoustic enhancement and stability were quantified in vitro in a continuously insonated sample holder using a 5 MHz single element transducer which generated a peak positive pressure of 0.69 MPa and a peak negative pressure of 0.25 MP at a PRF of 100 Hz and in a pulsatile flow phantom insonated at a single point using a C1-6 transducer on a GE Logiq E9 system (GE Healthcare) operating at 4.0 MHz at a mechanical index of 0.12. Flow cytometry was performed to analyze the total bubble count for each incubation time point. Lonidamine encapsulation was determined using liquid chromatography-mass spectrometry (LC-MS), the loading approach consisted of incubating the LND and TPGS at 37°C at 0, 24, and 48 hours. Bubbles incubated for 24 hours had an average encapsulation of 2.64 ± 0.32 µg LND/ mL MB, and those incubated for 48 hours had an average of 2.97 ± 0.36 µg LND/ mL MB, while non-incubated micelles had an average of 1.51 ± 0.05 µg LND/ mL MB, both TPGS micelle methods that were incubated showed a statistically significant improvement p < 0.001 compared to non-incubated. This work demonstrates the feasibility of fabricating lonidamine-loaded microbubbles and an improved approach for increasing drug encapsulation. The microbubbles retained their acoustic properties, and by incubating the lonidamine with the TPGS to form micelles, drug loading was increased.
机译:Lonidamine(LND)由于具有针对肿瘤中代谢糖酵解和线粒体呼吸的能力而被广泛研究[4]。然而,由于口服后生物利用度差,临床翻译停滞了。在这项研究中,我们探索了用LND(SE61)填充氧气微气泡的三个孵育时间点 O2 -LND),通过修改我们已发布的用于创建表面活性剂带壳的氧气微泡(SE61)的方法来进行放射疗法敏化 O2 )。使用5 MHz单元件换能器在连续声处理的样品架中对声增强和稳定性进行体外量化,该换能器在100 Hz的PRF和脉动流动体模中产生0.69 MPa的峰值正压和0.25 MP的峰值负压。使用GE Logiq E9系统(GE Healthcare)上的C1-6传感器在4.0 MHz下以0.12的机械指数单点声波。进行流式细胞仪分析每个孵育时间点的总气泡数。用液相色谱-质谱法(LC-MS)确定Lonidamine的包封率,加载方法包括在37°C下于0、24和48小时孵育LND和TPGS。孵育24小时的气泡的平均囊封度为2.64±0.32 µg LND / mL MB,孵育48小时的气泡的平均囊泡度为2.97±0.36 µg LND / mL MB,而未孵育的胶束的平均值为1.51±0.05 Lg / mL MB,两种孵育的TPGS胶束方法与未孵育的相比,在统计学上均有显着改善p <0.001。这项工作证明了制造载有LONID胺的微泡的可行性以及增加药物封装的改进方法。微泡保留了其声学特性,并且通过将lonidamine与TPGS孵育以形成胶束,从而增加了载药量。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号