Patskovsky Sergiy, Bergeron Eric, Rioux David, Meunier Michel
J Biophotonics. 2015 May;8(5):401-7. doi: 10.1002/jbio.201400025. Epub 2014 Jun 24.
We present a new hyperspectral reflected light microscopy system with a scanned broadband supercontinuum light source. This wide-field and low phototoxic hyperspectral imaging system has been successful for performing spectral three-dimensional (3D) localization and spectroscopic identification of CD44-targeted PEGylated AuNPs in fixed cell preparations. Such spatial and spectral information is essential for the improvement of nanoplasmonic-based imaging, disease detection and treatment in complex biological environment. The presented system can be used for real-time 3D NP tracking as spectral sensors, thus providing new avenues in the spatio-temporal characterization and detection of bioanalytes. 3D image of the distribution of functionalized AuNPs attached to CD44-expressing MDA-MB-231 human cancer cells.
我们展示了一种新型的高光谱反射光显微镜系统,该系统配备了扫描宽带超连续光源。这种宽视场且低光毒性的高光谱成像系统已成功用于在固定细胞制剂中对靶向CD44的聚乙二醇化金纳米颗粒进行光谱三维(3D)定位和光谱识别。此类空间和光谱信息对于改善复杂生物环境中基于纳米等离子体的成像、疾病检测和治疗至关重要。所展示的系统可作为光谱传感器用于实时3D纳米颗粒跟踪,从而为生物分析物的时空表征和检测提供新途径。附着于表达CD44的MDA-MB-231人癌细胞上的功能化金纳米颗粒分布的3D图像。