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Template-based formation of ultrasound microbubble contrast agents

机译:基于模板的超声微胶石造影剂的形成

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摘要

Precisely controlling microbubble size is critical for medical ultrasound imaging, where large microbubble contrast agents may lead to pulmonary microvascular embolization. In this study, we reported a facile method to fabricate the laminated ultrasound contrast agents with narrow size distribution. First, we prepared monodisperse silica particles (similar to 1.0 mu m in diameter) as a core template. Then an amphiphilic shell was coated on the SiO2 particles surface via amine-anhydride modification. After etching the SiO2 cores by HF, the formed hollow structured particles were further PEGylated with free carboxylate residues. After dialysis and freeze-drying, the as-prepared microbubbles showed a narrow size distribution (diameter = 1.1 mu m, PDI = 0.36). The microbubbles showed excellent stability for enhanced ultrasound contrast imaging for at least 20 minutes, resulting from the observed firm-shelling through electron microscopy. The laminated shells of the microbubbles have an average thickness of 100 nm composed of multiple aliphatic composites that efficiently reduce the leakage of inert gas. Further, these microbubbles also showed good biocompatibility when co-culturing with BNL CL2 cells in vitro. Based on the above evidence, this improved method for fabricating uniform ultrasound contrast agents can further translate into many biomedical applications.
机译:精确地控制微泡大小为医学超声成像,其中大的微泡造影剂可以导致肺微血管栓塞关键的。在这项研究中,我们报道了一个浅显的方法来制造粒径分布窄的叠层超声造影剂。首先,我们制备的单分散二氧化硅粒子(类似于1.0微米直径M)作为芯模板。然后两亲壳涂覆在SiO 2颗粒通过胺 - 酸酐改性表面。通过HF蚀刻在SiO 2芯后,将形成的中空结构的颗粒是进一步PEG化与游离羧酸酯残基。透析和冷冻干燥后,所制备的微泡表现出窄的粒径分布(直径= 1.1微米,PDI = 0.36)。微泡表现出增强的超声造影成像优异的稳定性为至少20分钟,从观察到的公司去壳通过电子显微镜得到的。微泡的层压壳具有100nm多个脂族复合物能够有效地减少惰性气体的泄漏的组成的平均厚度。此外,这些微泡也表现出良好的生物相容性与BNL CL2细胞在体外时共培养。基于上述的证据,用于制造均匀的超声造影剂这种改进的方法还可以转化为许多生物医药应用。

著录项

  • 来源
    《RSC Advances 》 |2016年第73期| 共6页
  • 作者单位

    Chung Yuan Christian Univ Dept Biomed Engn Taoyuan Taiwan;

    Chung Yuan Christian Univ Dept Biomed Engn Taoyuan Taiwan;

    Chung Yuan Christian Univ Dept Biomed Engn Taoyuan Taiwan;

    Natl Tsing Hua Univ Dept Biomed Engn &

    Environm Sci Hsinchu 30013 Taiwan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ;
  • 关键词

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