Department of Biomedical Engineering College of Engineering , Peking University , Beijing 100871 , China.
ACS Nano. 2019 May 28;13(5):5124-5132. doi: 10.1021/acsnano.8b08359. Epub 2019 May 8.
Inflammation is an immunological response involved in various inflammatory disorders ranging from neurodegenerative diseases to cancers. Luminol has been reported to detect myeloperoxidase (MPO) activity in an inflamed area through a light-emitting reaction. However, this method is limited by low tissue penetration and poor spatial resolution. Here, we fabricated a nanobubble (NB) doped with two tandem lipophilic dyes, red-shifting luminol-emitted blue light to near-infrared region through a process integrating bioluminescence resonance energy transfer (BRET) and fluorescence resonance energy transfer (FRET). This BRET-FRET process caused a 24-fold increase in detectable luminescence emission over luminol alone in an inflammation model induced by lipopolysaccharide. In addition, the echogenicity of the BRET-FRET NBs also enables perfused tissue microvasculature to be delineated by contrast-enhanced ultrasound imaging with high spatial resolution. Compared with commercially available ultrasound contrast agent, the BRET-FRET NBs exhibited comparable contrast-enhancing capability but much smaller size and higher concentration. This bioluminescence/ultrasound dual-modal contrast agent was then successfully applied for imaging of an animal model of breast cancer. Furthermore, biosafety experiments revealed that multi-injection of luminol and NBs did not induce any observable abnormality. By integrating the advantages of bioluminescence imaging and ultrasound imaging, this BRET-FRET system may have the potential to address a critical need of inflammation imaging.
炎症是一种免疫反应,涉及从神经退行性疾病到癌症等各种炎症性疾病。据报道,鲁米诺通过发光反应检测炎症部位的髓过氧化物酶(MPO)活性。然而,这种方法受到低组织穿透性和较差的空间分辨率的限制。在这里,我们制备了一种纳米泡(NB),其中掺杂了两种串联的亲脂性染料,通过将生物发光共振能量转移(BRET)和荧光共振能量转移(FRET)集成到一个过程中,将鲁米诺发出的蓝光红移到近红外区域。在由脂多糖诱导的炎症模型中,该 BRET-FRET 过程使检测到的发光发射比单独使用鲁米诺增加了 24 倍。此外,BRET-FRET NB 的声反射性还使灌注组织微血管能够通过对比增强超声成像以高空间分辨率进行描绘。与市售的超声造影剂相比,BRET-FRET NB 表现出相当的增强能力,但尺寸小得多,浓度高得多。这种生物发光/超声双模态造影剂随后成功应用于乳腺癌动物模型的成像。此外,生物安全实验表明,多次注射鲁米诺和 NB 不会引起任何可观察到的异常。通过整合生物发光成像和超声成像的优势,该 BRET-FRET 系统可能有潜力满足炎症成像的关键需求。