Department of Nanomedicine & Biopharmaceuticals, National Engineering Research Center for Nanomedicine, Huazhong University of Science and Technology, Wuhan, Hubei, China.
PLoS One. 2013 Apr 18;8(4):e61224. doi: 10.1371/journal.pone.0061224. Print 2013.
Nanobubbles and microbubbles are non-invasive ultrasound imaging contrast agents that may potentially enhance diagnosis of tumors. However, to date, both nanobubbles and microbubbles display poor in vivo tumor-selectivity over non-targeted organs such as liver. We report here cyanine 5.5 conjugated nanobubbles (cy5.5-nanobubbles) of a biocompatible chitosan-vitamin C lipid system as a dual ultrasound-fluorescence contrast agent that achieved tumor-selective imaging in a mouse tumor model. Cy5.5-nanobubble suspension contained single bubble spheres and clusters of bubble spheres with the size ranging between 400-800 nm. In the in vivo mouse study, enhancement of ultrasound signals at tumor site was found to persist over 2 h while tumor-selective fluorescence emission was persistently observed over 24 h with intravenous injection of cy5.5-nanobubbles. In vitro cell study indicated that cy5.5-flurescence dye was able to accumulate in cancer cells due to the unique conjugated nanobubble structure. Further in vivo fluorescence study suggested that cy5.5-nanobubbles were mainly located at tumor site and in the bladder of mice. Subsequent analysis confirmed that accumulation of high fluorescence was present at the intact subcutaneous tumor site and in isolated tumor tissue but not in liver tissue post intravenous injection of cy5.5-nanobubbles. All these results led to the conclusion that cy5.5-nanobubbles with unique crosslinked chitosan-vitamin C lipid system have achieved tumor-selective imaging in vivo.
纳米气泡和微气泡是非侵入性超声成像造影剂,可能有潜力增强肿瘤的诊断。然而,到目前为止,纳米气泡和微气泡在体内对非靶向器官(如肝脏)的肿瘤选择性都很差。我们在这里报告了一种生物相容性壳聚糖-维生素 C 脂质系统的菁染料 5.5 共轭纳米气泡(cy5.5-纳米气泡)作为一种双重超声-荧光造影剂,在小鼠肿瘤模型中实现了肿瘤选择性成像。cy5.5-纳米气泡悬浮液含有单气泡球和气泡球簇,尺寸在 400-800nm 之间。在体内小鼠研究中,发现在肿瘤部位的超声信号增强持续超过 2 小时,而静脉注射 cy5.5-纳米气泡后,肿瘤选择性荧光发射持续观察超过 24 小时。体外细胞研究表明,由于独特的共轭纳米气泡结构,cy5.5-荧光染料能够在癌细胞中积累。进一步的体内荧光研究表明,cy5.5-纳米气泡主要位于肿瘤部位和小鼠的膀胱中。随后的分析证实,静脉注射 cy5.5-纳米气泡后,完整的皮下肿瘤部位和分离的肿瘤组织中存在高荧光的积累,但在肝组织中没有。所有这些结果表明,具有独特交联壳聚糖-维生素 C 脂质系统的 cy5.5-纳米气泡已经实现了体内肿瘤选择性成像。