Published March 5, 2019 | Version Supplemental Material + Accepted Version
Journal Article Open

Development of Next-Generation Fluorescent Turn-On Sensor to Simultaneously Detect and Detoxify Mercury in Living Samples

  • 1. ROR icon Indian Institute of Technology Madras
  • 2. ROR icon Saha Institute of Nuclear Physics
  • 3. ROR icon Indian Institute of Technology Guwahati
  • 4. ROR icon Tata Institute of Fundamental Research

Abstract

Strategies for simultaneous detection and detoxification of Hg^(2+) using a single sensor from biological and environmental samples are limited and have not been realized in living organisms so far. We report a highly selective, small molecule "turn-on" fluorescent sensor, PYDMSA, based on the cationic dye Pyronin Y (PY) and chelating agent meso-2,3-dimercaptosuccinic acid (DMSA) for the simultaneous detection and detoxification of inorganic mercury (Hg^(2+)). After Hg^(2+) detection, concomitant detoxification was carried out with sufficient efficacy in living samples, which makes the sensor unique. PYDMSA exhibits high selectivity for Hg^(2+) over other competing metal ions with an experimental detection limit of ∼300 pM in aqueous buffer solution. When PYDMSA reacts with Hg2+, the CS–C^9 bond in the sensor gets cleaved. This results in the "turn-on" response of the fluorescence probe with a concomitant release of one equivalent of water-soluble Hg^(2+)–DMSA complex which leads to a synchronous detoxifying effect. The sensor by itself is nontoxic to cells in culture and has been used to monitor the real-time uptake of Hg^(2+) in live cells and zebrafish larvae. Thus, PYDMSA is a unique sensor which can be used to detect and detoxify mercury at the same time in living samples.

Additional Information

© 2019 American Chemical Society. Received: November 14, 2018; Accepted: February 4, 2019; Published: February 4, 2019. We thank the Department of Science and Technology (Government of India) for financial support (DST FILE NO. YSS/2015/001712 and DST 11-IFA-PH-07). A.M. thanks IIT Madras for an HTRA fellowship. We sincerely thank Dr. S. Maiti (TIFR) for allowing us to use his cell culture facility and Dr. M. Sonawane (TIFR) for allowing us to use his fish culture facility. Author Contributions: A.M. and K.B. contributed equally. The authors declare no competing financial interest.

Attached Files

Accepted Version - acs.analchem.8b05268.pdf

Supplemental Material - ac8b05268_si_001.pdf

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Additional details

Identifiers

Eprint ID
92621
Resolver ID
CaltechAUTHORS:20190204-095837869

Funding

Department of Science and Technology (India)
YSS/2015/001712
Department of Science and Technology (India)
11-IFA-PH-07
Indian Institute Of Technology

Dates

Created
2019-02-04
Created from EPrint's datestamp field
Updated
2021-11-16
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