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Development of a water-soluble fluorescent Al3+probe based on phenylsulfonyl-2-pyrone in biological systems

Fumiko Hara, Naoko Mizuyama, Takeshi Fujino, Ashok Kumar Shrestha, Thenuwara Arachchige Omila Kasun Meetiyagoda, Shinya Takada, Hideo Saji, Takahiro Mukai, Masayori Hagimori

ANALYTICA CHIMICA ACTA(2024)

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Abstract
Background: Al exists naturally in the environment and is an important component in acidic soils, which harm almost all plants. Furthermore, Al is widely used in food additives, cosmetics, and medicines, resulting in living organisms ingesting traces of Al orally or dermally every day. Accordingly, Al accumulates in the body, which can cause negative bioeffects and diseases, and this concern is gaining increasing attention. Therefore, to detect and track Al in the environment and in living organisms, the development of novel Al-selective probes that are water -soluble and exhibit fluorescence at long wavelengths is necessary. Results: In this study, an Al3+-selective fluorescent probe PSP based on a novel pyrone molecule was synthesized and characterized to detect and track Al in biological systems. PSP exhibited fluorescence enhancement at 580 nm in the presence of Al3+ in aqueous media. Binding analysis using Job's plot and structural analysis using 1H NMR showed that PSP formed a 1:1 complex with Al3+ at the two carbonyl groups of the dimethyl malonate of the pyrone ring. Upon testing in biological systems, PSP showed good cell membrane permeability, detected Analytica Chimica Acta 1299 (2024) 342436 intracellular Al3+ in human breast cancer cells (MDA-MB-231), and successfully imaged accumulated Al3+ in Microcystis aeruginosa and the larvae of Rheocricotopus species. Significance: The novel Al3+-selective fluorescent probe PSP is highly effective and is expected to aid in elucidating the role of Al3+ in the environment and living organisms.
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Key words
Aluminum,Fluorescent probe,Phenylsulfonyl-2-pyrone,Cell imaging,Aquatic organism imaging
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