Yang Hengli, Zhou Tian, Cai Wenbin, Yi Xiaomin, Liu Xi, Wang Yixiao, Zhang Li, Duan Yunyou
Department of Ultrasound Diagnosis, Tang Du Hospital, Fourth Military Medical University, Xi'an, China.
Department of Urology, PLA 105 Hospital, Hefei, China.
Tumour Biol. 2016 Oct;37(10):14153-14163. doi: 10.1007/s13277-016-5238-0. Epub 2016 Aug 19.
The purpose of this study was to prepare tumor-specific dual-mode nanobubbles as both ultrasound contrast agents (UCAs) and near-infrared fluorescence (NIRF) imaging agents for female tumors. Recent studies have demonstrated the conjugation of anti-tumor ligands on the surface of nanobubbles for use as molecule-targeting ultrasound contrast agents for tumor visualization. However, this complicated procedure has also posed a challenge to nanobubble stability. Thus, in the present study, we combined the fluorescent dye, NIRF IR-780 iodide, which has lipid solubility and tumor-targeting characteristics, with the phospholipid film of nanobubbles that we constructed. We then characterized the physical features of the IR-780-nanobubbles, observed their tumor-targeting capacity in multiple female tumor cell types in vitro, and verified their capability for use in tumor-specific ultrasound contrast imaging and NIRF imaging in vivo. The results showed that the new IR-780-nanobubbles had a uniform nano-size (442.5 ± 48.6 nm) and stability and that they were safe and effective at NIRF imaging and ultrasound imaging in vitro. The IR-780-nanobubbles were found to automatically accumulate on different female tumor cells in vitro with a considerable targeting rate (close to 40 %) but did not accumulate on cardiac muscle cells used as a negative control. Importantly, the IR-780-nanobubbles can detect female tumors precisely via dual-mode imaging in vivo. In conclusion, the new dual-mode IR-780-nanobubbles are stable and have potential advantages in non-invasive tumor-specific detection for female tumors via contrast-enhanced ultrasound and NIRF imaging.
本研究的目的是制备肿瘤特异性双模纳米气泡,用作女性肿瘤的超声造影剂(UCA)和近红外荧光(NIRF)成像剂。最近的研究表明,在纳米气泡表面偶联抗肿瘤配体,用作分子靶向超声造影剂以实现肿瘤可视化。然而,这一复杂过程也对纳米气泡的稳定性构成了挑战。因此,在本研究中,我们将具有脂溶性和肿瘤靶向特性的荧光染料NIRF IR-780碘化物与我们构建的纳米气泡的磷脂膜相结合。然后,我们对IR-780纳米气泡的物理特性进行了表征,在体外多种女性肿瘤细胞类型中观察了它们的肿瘤靶向能力,并验证了它们在体内用于肿瘤特异性超声造影成像和NIRF成像的能力。结果表明,新型IR-780纳米气泡具有均匀的纳米尺寸(442.5±48.6 nm)和稳定性,并且在体外NIRF成像和超声成像中安全有效。发现IR-780纳米气泡在体外能自动聚集在不同的女性肿瘤细胞上,靶向率相当可观(接近40%),但不会聚集在用作阴性对照的心肌细胞上。重要的是,IR-780纳米气泡可通过体内双模成像精确检测女性肿瘤。总之,新型双模IR-780纳米气泡稳定,在通过超声造影和NIRF成像对女性肿瘤进行非侵入性肿瘤特异性检测方面具有潜在优势。