Department of Chemical and Biomolecular Engineering, National University of Singapore, Singapore 117585, Singapore; Environmental Research Institute, National University of Singapore, Singapore 117411, Singapore.
Department of Chemical and Biomolecular Engineering, National University of Singapore, Singapore 117585, Singapore.
Biomaterials. 2014 Oct;35(30):8669-77. doi: 10.1016/j.biomaterials.2014.06.023. Epub 2014 Jul 4.
Noninvasive fluorescence cell tracking provides critical information on the physiological displacement and translocation of actively migrating cells, which deepens our understanding of biomedical engineering, oncological research, stem cell transplantation and therapies. Non-viral fluorescent protein transfection based cell tracing has been widely used but with issues related to cell type-dependent expression, lagged readout, immunogenicity and mutagenesis. Alternative cell tracking methods are therefore desired to attain reliable, stable, and efficient labeling over a long time. In this work, we have successfully developed ultra-bright organic dots with aggregation-induced emission (AIE dots) and demonstrated their capabilities for cellular imaging and cell tracking. The AIE dots possess high fluorescence, super photostability, and excellent cellular retention and biocompatibility. As compared to commonly used pMAX-GFP plasmid labeling approach, the organic AIE dots showed excellent cell labeling on all tested human cell lines and superior tracing performance, which opens up new opportunities in the cell-based immunotherapies and other related biological researches.
非侵入式荧光细胞示踪提供了关于活跃迁移细胞的生理位移和易位的关键信息,加深了我们对生物医学工程、肿瘤学研究、干细胞移植和治疗的理解。基于非病毒荧光蛋白转染的细胞示踪已被广泛应用,但存在与细胞类型依赖性表达、滞后读出、免疫原性和突变有关的问题。因此,需要替代的细胞跟踪方法来实现可靠、稳定和高效的长时间标记。在这项工作中,我们成功地开发了具有聚集诱导发射(AIE 点)的超亮有机点,并证明了它们在细胞成像和细胞跟踪方面的能力。AIE 点具有高荧光、超光稳定性以及优异的细胞保留和生物相容性。与常用的 pMAX-GFP 质粒标记方法相比,有机 AIE 点在所有测试的人细胞系上均表现出优异的细胞标记和优越的跟踪性能,这为基于细胞的免疫疗法和其他相关生物学研究开辟了新的机会。