4.7 Article

An efficient new dual fluorescent pyrene based chemosensor for the detection of bismuth (III) and aluminium (III) ions and its applications in bio-imaging

Journal

TALANTA
Volume 198, Issue -, Pages 249-256

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.talanta.2019.01.114

Keywords

Pyrene schiff base; Bi3+and Al3+detection; Spectroscopic; Studies; PET; Live cell imaging

Funding

  1. BU-DRDO, Centre for Life Sciences, Bharathiar University, Coimbatore, Tamil Nadu, India [DLS/86/50071/DRDO-BU CENTER]

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A new simple pyrene based schiff base chemosensor 1 (nicotinic acid pyren-1-ylmethylene-hydrazide) has been constructed and is prepared from 1-pyrenecarboxaldehyde and nicotinic hydrazide. Notably, the chemosensor 1 exhibited remarkable colour changes while in the presence of trivalent metal ions like Bi3+ & Al3+ ion in DMSO-H2O, (1:1 v/v, HEPES = 50 mM, pH = 7.4). The UV-Vis spectral investigation of chemosensor 1 showed that the maximum absorption peak appeared at 378 nm. In emission studies, chemosensor 1 develops weak fluorescence, while upon the addition of Bi3+ and Al3+ ions, it exhibits an enhancement of fluorescence intensity. Nevertheless, rest of metal ions have no changes in the emission spectra. The association constant of chemosensor 1 for binding to Bi3+ & Al3+ system had a value of 1.27 x 10(4) M-1 and 1.53 x 10(4) M-1. The detection limits were 0.12 M for Bi3+ and 0.17 M for Al3+ respectively. The overall results reveal that chemosensor 1 can act as a dual-channel, highly selective, and sensitive probe for Bi3+ and Al3+ ions. Moreover, the fluorescence imaging of chemosensor 1 was applied in RAW 264.7 cell line and cytotoxicity assay prove that this chemosensor 1 is non-toxic as well as highly biocompatible.

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