Amphiphilic BODIPY-based nanoparticles as “light-up” fluorescent probe for PAEs detection by an aggregation/disaggregation approach
[Display omitted] •An amphiphilic BODIPY-based small molecule fluorescent probe AJ-1 was established.•Probe AJ-1 specifically ‘‘light-up’’ in response to PAEs through a disaggregation-induced emission mechanism.•The practical applications in real water samples and living cells were achieved. Phthali...
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Veröffentlicht in: | Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy Molecular and biomolecular spectroscopy, 2021-05, Vol.252, p.119492, Article 119492 |
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Sprache: | eng |
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•An amphiphilic BODIPY-based small molecule fluorescent probe AJ-1 was established.•Probe AJ-1 specifically ‘‘light-up’’ in response to PAEs through a disaggregation-induced emission mechanism.•The practical applications in real water samples and living cells were achieved.
Phthalic acid eaters (PAEs) play the role of plasticizer and have been widely used in the industrial and plastic production process. But due to not chemically bound in the polymeric matrix, PAEs can be easily released directly and/or indirectly into the environment, and pose a threat the ecosystem and human health. Small-molecule self-assembled nanoparticles have drawn more and more attention due to advantages of precise molecular structure, biocompatibility, great diversity, and tunability in optical properties and functionalities. Here we report the use of disaggregation-induced emission (DIE) based supramolecular assembly to design organic nanoprobe for detection PAEs. In the water solution, the designed small organic fluorophore AJ-1 was aggregated via noncovalent forces to form fluorescence off nanoparticles, but in the presence of PAEs, they disaggregated and produced a clear light-up fluorescent signal. The detection of PAEs with selectivity, sensitivity and rapid response were further achieved. The experiment of recovery of PAEs in real-water sample illustrated the practicability of probe AJ-1 in real-world applications. Besides, cellular uptake assay suggested that AJ-1 could pass through membrane and gather in the cytoplasm. |
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ISSN: | 1386-1425 1873-3557 |
DOI: | 10.1016/j.saa.2021.119492 |