Department of Materials Science and Engineering, National Chiao Tung University, No. 1001, Ta-Hsueh Rd., Hsinchu 300, Taiwan, ROC.
Department of Biomedical Engineering and Environmental Sciences, National Tsing Hua University, Hsinchu 300, Taiwan, ROC.
J Control Release. 2013 Nov 28;172(1):118-127. doi: 10.1016/j.jconrel.2013.07.029. Epub 2013 Aug 9.
Nanobubbles can serve as promising, next-generation theranostic platforms for ultrasound (US) and magnetic resonance (MR) imaging, and combined magnetic targeting (MT) and high-intensity focused ultrasound (HIFU)-triggered drug release for tumor therapy. Nanobubble-based dual contrast enhancement agents encapsulated with perfluoropentane and stabilized with superparamagnetic iron oxide (SPIO) nanoparticles have been synthesized through a single-step emulsion process from thermosensitive F127 and polyacrylic acid (PAA). Both US and MR imaging contrast can be optimized by varying the shell thickness and SPIO-embedded concentration. The US contrast can be enhanced from a mean gray value of 62 to 115, and the MR r2 value can be enhanced from 164 to 208 (s(-1)mM (-1)Fe) by increasing the SPIO concentration from 14.1 to 28.2mg/mL, respectively. In vivo investigations of SPIO-embedded nanobubbles in excised tumors under external MT revealed that the US and MR signals change quantitatively compared to the same site without MT. This combined strategy enables the nanobubbles to enhance both passive targeting (increasing the permeability by HIFU) and physical MT of chemotherapeutic drugs to tumors. The integration of functionalities makes this nanobubble system a powerful and viable new tool to achieve simultaneous in vivo tumor imaging and efficacious cancer therapy.
纳米气泡可用作有前途的下一代超声 (US) 和磁共振 (MR) 成像的治疗诊断平台,以及联合磁靶向 (MT) 和高强度聚焦超声 (HIFU) 触发的药物释放,用于肿瘤治疗。通过一步乳化工艺从热敏 F127 和聚丙烯酸 (PAA) 合成了封装全氟戊烷并稳定在超顺磁性氧化铁 (SPIO) 纳米粒子上的纳米气泡基双重对比增强剂。通过改变壳层厚度和 SPIO 嵌入浓度,可以优化 US 和 MR 成像对比。通过将 SPIO 浓度从 14.1mg/mL 增加到 28.2mg/mL,US 对比可以从平均灰度值 62 增强到 115,MR r2 值可以从 164 增强到 208(s(-1)mM(-1)Fe)。在切除肿瘤的体外 MT 下对 SPIO 嵌入纳米气泡的体内研究表明,与没有 MT 的相同部位相比,US 和 MR 信号发生了定量变化。这种联合策略使纳米气泡能够增强化疗药物的被动靶向(通过 HIFU 增加通透性)和物理 MT。功能的集成使这种纳米气泡系统成为一种强大且可行的新工具,可实现体内肿瘤成像和有效的癌症治疗。