Mørch Ýrr, Hansen Rune, Berg Sigrid, Åslund Andreas K O, Glomm Wilhelm R, Eggen Siv, Schmid Ruth, Johnsen Heidi, Kubowicz Stephan, Snipstad Sofie, Sulheim Einar, Hak Sjoerd, Singh Gurvinder, McDonagh Birgitte H, Blom Hans, de Lange Davies Catharina, Stenstad Per M
SINTEF Materials and Chemistry, P.O. Box 4760 Sluppen, 7465, Trondheim, Norway.
SINTEF Technology and Society, P.O. Box 4760 Sluppen, 7465, Trondheim, Norway.
Contrast Media Mol Imaging. 2015 Sep-Oct;10(5):356-66. doi: 10.1002/cmmi.1639. Epub 2015 Apr 30.
Microbubbles (MBs) are routinely used as contrast agents for ultrasound imaging. The use of ultrasound in combination with MBs has also attracted attention as a method to enhance drug delivery. We have developed a technology platform incorporating multiple functionalities, including imaging and therapy in a single system consisting of MBs stabilized by polyethylene glycol (PEG)-coated polymeric nanoparticles (NPs). The NPs, containing lipophilic drugs and/or contrast agents, are composed of the widely used poly(butyl cyanoacrylate) (PBCA) polymer and prepared in a single step. MBs stabilized by these NPs are subsequently prepared by self-assembly of NPs at the MB air-liquid interface. Here we show that these MBs can act as contrast agents for conventional ultrasound imaging. Successful encapsulation of iron oxide NPs inside the PBCA NPs is demonstrated, potentially enabling the NP-MBs to be used as magnetic resonance imaging (MRI) and/or molecular ultrasound imaging contrast agents. By precise tuning of the applied ultrasound pulse, the MBs burst and the NPs constituting the shell are released. This could result in increased local deposit of NPs into target tissue, providing improved therapy and imaging contrast compared with freely distributed NPs.
微泡(MBs)通常用作超声成像的造影剂。超声与MBs联合使用作为增强药物递送的一种方法也引起了关注。我们开发了一个包含多种功能的技术平台,在由聚乙二醇(PEG)包被的聚合物纳米颗粒(NPs)稳定的MBs组成的单一系统中实现成像和治疗等功能。这些含有亲脂性药物和/或造影剂的NPs由广泛使用的聚(氰基丙烯酸丁酯)(PBCA)聚合物组成,并通过一步法制备。随后通过NPs在MB气液界面的自组装制备由这些NPs稳定的MBs。在这里,我们表明这些MBs可作为传统超声成像的造影剂。已证明成功地将氧化铁NPs封装在PBCA NPs内,这可能使NP-MBs能够用作磁共振成像(MRI)和/或分子超声成像造影剂。通过精确调整施加的超声脉冲,MBs破裂,构成外壳的NPs被释放。与自由分布的NPs相比,这可能导致NPs在靶组织中的局部沉积增加,从而提供更好的治疗效果和成像对比度。