High-Throughput Screening of Antioxidant Drug Candidates from Natural Antioxidants with a "Zero" Intrinsic Fluorescence Peroxynitrite Sensing Precursor.

J Med Chem

Key Laboratory of Green Chemistry and Technology of Ministry of Education, College of Chemistry, Sichuan University, 29 Wangjiang Road, Chengdu 610064, P. R. China.

Published: October 2024

AI Article Synopsis

  • The study discusses a new high-throughput screening method for discovering antioxidant drug candidates to treat hepatorenal syndrome, focusing on managing elevated peroxynitrite levels.
  • It highlights the development of a new fluorescent probe with "zero" inherent fluorescence, overcoming limitations of existing probes that exhibit incomplete fluorescence quenching.
  • Luteolin was identified as a potential antioxidant through its activation of a specific signaling pathway, indicating the probe's versatility and providing a foundation for future fluorescent sensor innovations.

Article Abstract

The fluorescence high-throughput screening method is of importance for new antioxidant drug candidate discovery for the treatment of serious hepatorenal syndrome, which displayed an obvious upregulated peroxynitrite level. However, most of the current ONOO probes possessed incomplete fluorescence quenching efficiency, which can result in non-negligible probe inherent fluorescence. Hence, we utilized the probe conjugated structure disruption strategy to construct hydrogenation phosphorus-substituted rhodamine () with "zero" probe inherent fluorescence character. Based on the precursor, a series of natural products were screened for identifying antioxidant drug candidates. Luteolin was screened out by activating the Sirt1-Nrf2-HO-1 signaling pathway to regulate the accumulation of ONOO in the hepatorenal syndrome. Overall, the "zero" probe inherent fluorescence ONOO sensor constructed here applies for a promising and versatile toolbox for illuminating the ONOO-related pathological process in the hepatorenal syndrome. Besides, this strategy of constructing highly sensitive sensors could serve as a valuable reference for further fluorescent probes.

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Source
http://dx.doi.org/10.1021/acs.jmedchem.4c01858DOI Listing

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