Zhu Jing, Chu Chengchao, Li Dongsheng, Zhang Yang, Cheng Yi, Lin Huirong, Wang Xiaoyong, Liu Junxian, Pang Xin, Cheng Jingliang, Liu Gang
Department of Magnetic Resonance Imaging, The First Affiliated Hospital of Zhengzhou University, Zhengzhou, China.
Center for Molecular Imaging and Translational Medicine, School of Public Health, Xiamen University, Xiamen, China.
Front Bioeng Biotechnol. 2022 Apr 25;10:890668. doi: 10.3389/fbioe.2022.890668. eCollection 2022.
Hepatocellular carcinoma (HCC), the fifth most common cancer worldwide, poses a severe threat to public health. Intraoperative fluorescence imaging provides a golden opportunity for surgeons to visualize tumor-involved margins, thereby implementing precise HCC resection with minimal damage to normal tissues. Here, a novel-acting contrast agent, which facilely bridges indocyanine green (ICG) and lipiodol using self-emulsifying nanotechnology, was developed for optical surgical navigation. Compared to clinically available ICG probe, our prepared nanoemulsion showed obviously red-shifted optical absorption and enhanced fluorescence intensity. Further benefiting from the shielding effect of lipiodol, the fluorescence stability and anti-photobleaching ability of nanoemulsion were highly improved, indicating a great capacity for long-lasting intraoperative imaging. Under the fluorescence guidance of nanoemulsion, the tumor tissues were clearly delineated with a signal-to-noise ratio above 5-fold, and then underwent a complete surgical resection from orthotopic HCC-bearing mice. Such superior fluorescence performances, ultrahigh tumor-to-liver contrast, as well as great bio-safety, warrants the great translational potential of nanoemulsion in precise HCC imaging and intraoperative navigation.
肝细胞癌(HCC)是全球第五大常见癌症,对公众健康构成严重威胁。术中荧光成像为外科医生提供了一个绝佳机会,使其能够可视化肿瘤累及的边缘,从而在对正常组织损伤最小的情况下实施精确的肝癌切除术。在此,我们开发了一种新型造影剂,它利用自乳化纳米技术轻松地将吲哚菁绿(ICG)与碘油连接起来,用于光学手术导航。与临床可用的ICG探针相比,我们制备的纳米乳液显示出明显的红移光吸收和增强的荧光强度。进一步受益于碘油的屏蔽作用,纳米乳液的荧光稳定性和抗光漂白能力得到了高度提高,这表明其具有很强的持久术中成像能力。在纳米乳液的荧光引导下,肿瘤组织被清晰勾勒出来,信噪比高于5倍,然后对原位荷肝癌小鼠进行了完整的手术切除。这种优异的荧光性能、超高的肿瘤与肝脏对比度以及良好的生物安全性,保证了纳米乳液在精确肝癌成像和术中导航方面具有巨大的转化潜力。