研究目的
To explore the roles of polymer micelles in biosensing by constructing a micellar nanoprobe Nano-Cz through self-assembly of a carbazole-based SO2 fluorescence sensor Cz-Id and an amphiphilic copolymer (DSPE-mPEG2000), and to evaluate its analytical performance and cellular imaging ability.
研究成果
The micellar nanoprobe Nano-Cz exhibited good analytical performance in 100% aqueous environment and superior cellular imaging ability. It showed a large dynamic response range, eliminated signal interference from DNA, and demonstrated the ability of polymer micelles to modulate sensors’ analytical performance and reduce unwanted interactions with biomacromolecules. This approach provides an alternative strategy to develop fluorescent probes with various performances and promotes their biological application.
研究不足
The study demonstrates the potential of polymer micelles in modulating sensors’ analytical performance and reducing unwanted interactions with biomacromolecules. However, the broader application of this approach to other types of sensors and in more complex biological systems remains to be explored.