Department of Radiology, College of Medicine, Yonsei University, Seoul, 03722, Republic of Korea.
J Mater Chem B. 2021 Apr 14;9(14):3131-3135. doi: 10.1039/d1tb00058f. Epub 2021 Mar 16.
Herein, lipid-coated polyaniline (LiPAni) nanoparticles were fabricated to monitor the redox state of cancer cells. To confirm the characteristics of LiPAni, we firstly analyzed the size and chemical structures of the LiPAni nanoparticles. The absorbance properties of the LiPAni nanoparticles were observed to vary with the pH conditions. Furthermore, cell viability tests conducted with breast cancer cell lines showed that the cell viability of the cells with LiPAni nanoparticles was dramatically increased compared to those with the Tween80-coated polyaniline nanoparticles (TPAni) as a control. Subsequently, the colors of the LiPAni nanoparticles were observed and analyzed using spectroscopic methods. Finally, in order to investigate the more accurate sensing of the redox state using the color changes of the LiPAni nanoparticles with cancer cell lines, dark field microscopic images and scattering spectra were recorded at the single nanoparticle scale. For the TPAni nanoparticles, there was only a change in brightness and no change in color, but for the LiPAni nanoparticles, there was a change of color from yellow to pink in the dark field images.
本文制备了脂质包覆的聚苯胺(LiPAni)纳米粒子来监测癌细胞的氧化还原状态。为了确认 LiPAni 的特性,我们首先分析了 LiPAni 纳米粒子的大小和化学结构。观察到 LiPAni 纳米粒子的吸光度性质随 pH 值条件而变化。此外,用乳腺癌细胞系进行的细胞活力测试表明,与作为对照的 Tween80 包覆的聚苯胺纳米粒子(TPAni)相比,具有 LiPAni 纳米粒子的细胞的细胞活力显著增加。随后,使用光谱法观察和分析了 LiPAni 纳米粒子的颜色。最后,为了使用癌细胞系中 LiPAni 纳米粒子颜色变化更准确地感测氧化还原状态,在单纳米粒子尺度上记录了暗场显微镜图像和散射光谱。对于 TPAni 纳米粒子,只有亮度的变化,没有颜色的变化,但对于 LiPAni 纳米粒子,在暗场图像中颜色从黄色变为粉红色。