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March 10, 2026ChemistrySelect0 citations

Chemical Profiling and Multi‐Bioactive Potential of Onosma nigricaulis

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GBGün BinzetMersin ÜniversitesiPÇPınar Küce ÇevikHarran UniversityIKIsmail KoyuncuHarran University

Key Points

  • The research aims to analyze the chemical composition and biological activities of Onosma nigricaulis extracts.
  • Chemical composition analyzed using GC-MS for ethanolic and petroleum ether extracts.
  • Antioxidant potential evaluated with DPPH and reducing power assays.
  • Antimicrobial activity assessed against Escherichia coli, Enterococcus faecalis, and Candida albicans.
  • Cytotoxicity tested using the MTT assay on A549 and DU-145 cell lines.
  • Ethanolic extract showed 72.53% antioxidant inhibition at 800 µg/mL.
  • EE exhibited lower minimum inhibitory concentration values (5.09–6.09 mg/mL) against tested microorganisms.
  • Significant cytotoxic effects were observed with IC50 values of 35.38 µg/mL for A549 and 57.30 µg/mL for DU-145 cells.

Abstract

ABSTRACT In Turkish folk medicine, Onosma species are used to treat wounds, burns, and ulcers. This study investigated the chemical composition and biological activities of ethanolic (EE) and petroleum ether (PEE) extracts from the endemic Onosma nigricaulis (Boraginaceae). GC–MS analysis identified 25 and 21 compounds in EE and PEE, representing over 90% of total extract content. The major constituents of EE were palmitic acid (25.84%), linolenic acid (19.36%), and γ‐sitosterol (11.25%), while PEE mainly contained linolenyl alcohol (16.48%), γ‐sitosterol (15.50%), and palmitic acid (14.69%). FT‐IR spectra confirmed the presence of hydroxyl, carbonyl, and alkyl functional groups, supporting the GC–MS results. Antioxidant potential was evaluated using DPPH andreducing power assays, where EE exhibited stronger activity, achieving 72.53% inhibition at 800 µg/mL. Both extracts showed antimicrobial activity against Escherichia coli , Enterococcus faecalis , and Candida albicans , with EE displaying lower MIC values (5.09–6.09 mg/mL). Cytotoxicity assessment via MTT assay revealed significant dose‐dependent effects, with IC 50 values of 35.38 µg/mL for A549 and 57.30 µg/mL for DU‐145 cells. These results highlight O. nigricaulis as a promising natural source of bioactive compounds with antioxidant, antimicrobial, and anticancer potential.

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Cite This Study

Binzet et al. (2026) studied this question.

synapsesocial.com/papers/69af95de70916d39fea4de51https://doi.org/10.1002/slct.202506953
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