Department of Radiology, College of Medicine, Yonsei University, Seoul 03722, Korea.
Nanotechnology. 2016 Jun 3;27(22):225101. doi: 10.1088/0957-4484/27/22/225101. Epub 2016 Apr 21.
Stem-like cancer cells possess intrinsic features and their CD44 regulate redox balance in cancer cells to survive under stress conditions. Thus, we have fabricated biomarker-specific conjugated polyplexes using CD44-targetable hyaluronic acid and redox-sensible polyaniline based on a nanoemulsion method. For the most sensitive recognition of the cellular redox at a single nanoparticle scale, a nano-scattering spectrum imaging analyzer system was introduced. The conjugated polyplexes showed a specific targeting ability toward CD44-expressing cancer cells as well as a dramatic change in its color, which depended on the redox potential in the light-scattered images. Therefore, these polyaniline-based conjugated polyplexes as well as analytical processes that include light-scattering imaging and measurements of scattering spectra, clearly establish a systematic method for the detection and monitoring of cancer microenvironments.
类干细胞具有内在特征,其 CD44 调节癌细胞中的氧化还原平衡,使它们能够在应激条件下存活。因此,我们使用 CD44 靶向透明质酸和基于氧化还原敏感的聚苯胺,通过纳米乳液法制备了生物标志物特异性的共轭超分子聚合物。为了在单个纳米颗粒尺度上最敏感地识别细胞的氧化还原状态,我们引入了纳米散射光谱成像分析系统。共轭超分子聚合物对表达 CD44 的癌细胞具有特异性靶向能力,并且其颜色发生明显变化,这取决于光散射图像中的氧化还原电势。因此,这些基于聚苯胺的共轭超分子聚合物以及包括光散射成像和散射光谱测量在内的分析过程,为癌症微环境的检测和监测建立了一种系统的方法。