Jandhyala Sidhartha, Van Namen Austin, Spatarelu Catalina-Paula, Luke Geoffrey P
Thayer School of Engineering, Dartmouth College, Hanover, NH 03755, USA.
Translational Engineering in Cancer Program, Dartmouth Cancer Center, Lebanon, NH 03756, USA.
Nanomaterials (Basel). 2022 Jun 30;12(13):2251. doi: 10.3390/nano12132251.
Perfluorocarbon nanodroplets offer an alternative to gaseous microbubbles as contrast agents for ultrasound imaging. They can be acoustically activated to induce a liquid-to-gas phase transition and provide contrast in ultrasound images. In this study, we demonstrate a new strategy to synthesize antibody-conjugated perfluorohexane nanodroplet (PFHnD-Ab) ultrasound contrast agents that target cells overexpressing the epidermal growth factor receptor (EGFR). The perfluorohexane nanodroplets (PFHnD) containing a lipophilic DiD fluorescent dye were synthesized using a phospholipid shell. Antibodies were conjugated to the surface through a hydrazide-aldehyde reaction. Cellular binding was confirmed using fluorescence microscopy; the DiD fluorescence signal of the PFHnD-Ab was 5.63× and 6× greater than the fluorescence signal in the case of non-targeted PFHnDs and the EGFR blocking control, respectively. Cells were imaged in tissue-mimicking phantoms using a custom ultrasound imaging setup consisting of a high-intensity focused ultrasound transducer and linear array imaging transducer. Cells with conjugated PFHnD-Abs exhibited a significantly higher (p < 0.001) increase in ultrasound amplitude compared to cells with non-targeted PFHnDs and cells exposed to free antibody before the addition of PFHnD-Abs. The developed nanodroplets show potential to augment the use of ultrasound in molecular imaging cancer diagnostics.
全氟碳纳米液滴可作为超声成像造影剂,替代气态微泡。它们可被声激活以诱导液-气相转变,并在超声图像中提供造影效果。在本研究中,我们展示了一种合成抗体偶联全氟己烷纳米液滴(PFHnD-Ab)超声造影剂的新策略,该造影剂可靶向过表达表皮生长因子受体(EGFR)的细胞。使用磷脂壳合成了含有亲脂性DiD荧光染料的全氟己烷纳米液滴(PFHnD)。通过酰肼-醛反应将抗体偶联到表面。使用荧光显微镜确认细胞结合情况;PFHnD-Ab的DiD荧光信号分别比非靶向PFHnD和EGFR阻断对照情况下的荧光信号强5.63倍和6倍。使用由高强度聚焦超声换能器和线性阵列成像换能器组成的定制超声成像装置,在组织模拟体模中对细胞进行成像。与非靶向PFHnD的细胞以及在添加PFHnD-Ab之前暴露于游离抗体的细胞相比,偶联PFHnD-Ab的细胞在超声振幅上表现出显著更高(p < 0.001)的增加。所开发的纳米液滴显示出在分子成像癌症诊断中增强超声应用的潜力。