研究目的
Investigating the therapeutic effects of a specific herbal medicine on a particular disease.
研究成果
In summary, we have developed a CdSe/ZnS QD-Rh FRET system to serve as a sensitive HNE sensor (QDP) for spatiotemporal dynamic imaging and potential diagnosis of pulmonary diseases. The nanoprobe possesses excellent sensitivity with a LOD of 7.15 pM and desirable selectivity over other serine hydrolases. Moreover, like all other FRET probes, it can detect HNE in a ratiometric manner thus could minimize environmental interference to the fluorescence, which would greatly facilitate the imaging of HNE in cell lines and mice. Most importantly, it could discriminate the patients from the healthy based on the determination of HNE activity in the serum samples, demonstrating its potential application in the clinical diagnosis of HNE-related diseases.
研究不足
The bioimaging applications using QDP were achieved in both live cells and small animal models, while this system has some limitations. Firstly, it utilized the single-molecule fluorescence modality, which is not sufficient for accurate disease diagnosis in living organisms. Secondly, longer emission wavelength may be preferable for deep tissue imaging. Finally, high-quality QDs with excellent purity and excellent monodispersity should be crucial for stable functions In Vivo.