Tianjin Key Laboratory of Biomedical Materials, Institute of Biomedical Engineering, Chinese Academy of Medical Sciences & Peking Union Medical College, Tianjin 300192, China.
Molecules. 2012 May 25;17(6):6348-61. doi: 10.3390/molecules17066348.
Zinc phthalocyanine labelled polyethylene glycol was prepared to track and monitor the in vivo fate of polyethylene glycol. The chemical structures were characterized by nuclear magnetic resonance and infrared spectroscopy. Their light stability and fluorescence quantum yield were evaluated by UV-Visible and fluorescence spectroscopy methods. The interaction of zinc phthalocyanine labelled polyethylene glycol with bovine serum albumin was evaluated by fluorescence titration and isothermal titration calorimetry methods. Optical imaging in vivo, organ aggregation as well as distribution of fluorescence experiments for tracking polyethylene glycol were performed with zinc phthalocyanine labelled polyethylene glycol as fluorescent agent. Results show that zinc phthalocyanine labelled polyethylene glycol has good optical stability and high emission ability in the near infrared region. Imaging results demonstrate that zinc phthalocyanine labelled polyethylene glycol can track and monitor the in vivo process by near infrared fluorescence imaging, which implies its potential in biomaterials evaluation in vivo by a real-time noninvasive method.
锌酞菁标记的聚乙二醇被制备用来跟踪和监测聚乙二醇在体内的命运。化学结构通过核磁共振和红外光谱进行了表征。通过紫外可见分光光度法和荧光分光光度法评价了它们的光稳定性和荧光量子产率。通过荧光滴定和等温滴定量热法评价了锌酞菁标记的聚乙二醇与牛血清白蛋白的相互作用。使用锌酞菁标记的聚乙二醇作为荧光剂进行了体内光学成像、器官聚集以及荧光实验以跟踪聚乙二醇。结果表明,锌酞菁标记的聚乙二醇在近红外区域具有良好的光学稳定性和高发射能力。成像结果表明,锌酞菁标记的聚乙二醇可以通过近红外荧光成像来跟踪和监测体内过程,这意味着它有可能通过实时非侵入性方法在体内评估生物材料。