Jian Jia, Liu Chengbo, Gong Yuping, Su Lei, Zhang Bin, Wang Zhigang, Wang Dong, Zhou Yu, Xu Fenfen, Li Pan, Zheng Yuanyi, Song Liang, Zhou Xiyuan
Institute of Ultrasound Imaging, The Second Affiliated Hospital of Chongqing Medical University, Chongqing 400010, China.
3. Research Lab for Biomedical Optics and Molecular Imaging, Shenzhen Key Lab for Molecular Imaging, Institute of Biomedical and Health Engineering, Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences, Shenzhen 518055, China.
Theranostics. 2014 Aug 1;4(10):1026-38. doi: 10.7150/thno.9754. eCollection 2014.
The in vivo applications of gas-core microbubbles have been limited by gas diffusion, rapid body clearance, and poor vascular permeability. To overcome these limitations, using a modified three-step emulsion process, we have developed a first-of-its-kind India ink incorporated optically-triggerable phase-transition perfluorocarbon nanodroplets (INDs) that can provide not only three types of contrast mechanisms-conventional/thermoelastic photoacoustic, phase-transition/nonlinear photoacoustic, and ultrasound imaging contrasts, but also a new avenue for photoacoustic effect mediated tumor therapy. Upon pulsed laser illumination above a relatively low energy threshold, liquid-gas phase transition of the INDs has been demonstrated both in vitro and in vivo, offering excellent contrasts for photoacoustic and ultrasound dual-modality imaging. With further increased laser energy, the nanodroplets have been shown to be capable of destructing cancer cells in vivo, presumably due to the photoacoustic effect induced shock-wave generation from the carbon particles of the incorporated India ink. The demonstrated results suggest that the developed multifunctional phase-transition nanodroplets have a great potential for many theranostic biomedical applications, including photoacoustic/ultrasound dual-modality molecular imaging and targeted, localized cancer therapy.
气芯微泡的体内应用受到气体扩散、快速的体内清除以及较差的血管通透性的限制。为了克服这些限制,我们采用改进的三步乳化工艺,开发出了首例掺入印度墨水的光触发相变全氟碳纳米液滴(INDs),其不仅能提供三种类型的对比机制——传统/热弹性光声、相变/非线性光声和超声成像对比,还为光声效应介导的肿瘤治疗开辟了一条新途径。在高于相对较低能量阈值的脉冲激光照射下,INDs的液-气相变已在体外和体内得到证实,为光声和超声双模态成像提供了出色的对比效果。随着激光能量的进一步增加,纳米液滴已被证明能够在体内破坏癌细胞,这可能是由于掺入的印度墨水中的碳颗粒产生的光声效应引发了冲击波。所展示的结果表明,所开发的多功能相变纳米液滴在许多治疗诊断生物医学应用中具有巨大潜力,包括光声/超声双模态分子成像以及靶向、局部癌症治疗。