Repository logo
  • English
  • العربية
  • বাংলা
  • Català
  • Čeština
  • Deutsch
  • Ελληνικά
  • Español
  • Suomi
  • Français
  • Gàidhlig
  • हिंदी
  • Magyar
  • Italiano
  • Қазақ
  • Latviešu
  • Nederlands
  • Polski
  • Português
  • Português do Brasil
  • Srpski (lat)
  • Српски
  • Svenska
  • Türkçe
  • Yкраї́нська
  • Tiếng Việt
Log In
New user? Click here to register.Have you forgotten your password?
  1. Home
  2. IIT Gandhinagar
  3. Chemistry
  4. CH Publications
  5. Detecting labile heme and ferroptosis through ‘turn-on’ fluorescence and lipid droplet localization post Fe2+ sensing
 
  • Details

Detecting labile heme and ferroptosis through ‘turn-on’ fluorescence and lipid droplet localization post Fe2+ sensing

Source
Journal of Materials Chemistry B
ISSN
2050750X
Date Issued
2024-04-16
Author(s)
Dubey, Yogesh
Mansuri, Shabnam
Kanvah, Sriram  
DOI
10.1039/d4tb00353e
Volume
12
Issue
20
Abstract
Iron, a crucial biologically active ion essential for metabolic processes in living organisms, plays a vital role in biological functions, and imbalances in iron levels can lead to various diseases. In this study, we have developed two simple “turn-on” fluorescent probes, NOPy and NOCN, for the quick and selective detection of Fe<sup>2+</sup> at nanomolar levels (LOD of 35 nM), accompanied by significant absorption and emission shifts, along with colorimetric demarcation. Both fluorophores exhibit an excellent “turn-on” emission response upon encountering Fe<sup>2+</sup> in the cells. Flow cytometry and confocal fluorescence imaging studies demonstrate enhanced fluorescence signals in response to labile iron, efficiently detecting heme during erastin-induced ferroptosis. Interestingly, we also observed that the product formed after Fe<sup>2+</sup> sensing localizes within the lipid droplets. These water-soluble and highly sensitive reactive probes, NOPy and NOCN, enable investigations of iron-dependent physiological and pathological conditions. The development of these probes represents an advancement in the field, offering a rapid and selective means for detecting Fe<sup>2+</sup> with minimal cytotoxicity.
Unpaywall
URI
http://repository.iitgn.ac.in/handle/IITG2025/28949
IITGN Knowledge Repository Developed and Managed by Library

Built with DSpace-CRIS software - Extension maintained and optimized by 4Science

  • Privacy policy
  • End User Agreement
  • Send Feedback
Repository logo COAR Notify