LC-MS/MS, GC-MS and molecular docking analysis for phytochemical fingerprint and bioactivity of Beta vulgaris L

Sci Rep. 2024 Mar 29;14(1):7491. doi: 10.1038/s41598-024-58338-7.

Abstract

The plants that we consume in our daily diet and use as a risk preventer against many diseases have many biological and pharmacological activities. In this study, the phytochemical fingerprint and biological activities of Beta vulgaris L. leaf extract, which are widely consumed in the Black Sea region, were investigated. The leaf parts of the plant were dried in an oven at 35 °C and then ground into powder. The main constituents in B. vulgaris were identified by LC-MS/MS and GC-MS analyses. Phenolic content, betaxanthin and betacyanin levels were investigated in the extracts obtained using three different solvents. The biological activity of the extract was investigated by anti-microbial, anti-mutagenic, anti-proliferative and anti-diabetic activity tests. Anti-diabetic activity was investigated by in vitro enzyme inhibition and in-silico molecular docking was performed to confirm this activity. In the LC-MS analysis of B. vulgaris extract, a major proportion of p_coumaric acid, vannilin, protecatechuic aldehyde and sesamol were detected, while the major essential oils determined by GC-MS analysis were hexahydrofarnesyl acetone and phytol. Among the solvents used, the highest extraction efficiency of 2.4% was obtained in methanol extraction, and 36.2 mg of GAE/g phenolic substance, 5.1 mg/L betacyanin and 4.05 mg/L betaxanthin were determined in the methanol extract. Beta vulgaris, which exhibited broad-spectrum anti-microbial activity by forming a zone of inhibition against all tested bacteria, exhibited anti-mutagenic activity in the range of 35.9-61.8% against various chromosomal abnormalities. Beta vulgaris extract, which did not exhibit mutagenic, sub-lethal or lethal effects, exhibited anti-proliferative activity by reducing proliferation in Allium root tip cells by 21.7%. 50 mg/mL B. vulgaris extract caused 58.9% and 55.9% inhibition of α-amylase and α-glucosidase activity, respectively. The interactions of coumaric acid, vanniline, hexahydrofarnesyl acetone and phytol, which are major compounds in phytochemical content, with α-amylase and α-glucosidase were investigated by in silico molecular docking and interactions between molecules via various amino acids were determined. Binding energies between the tested compounds and α-amylase were obtained in the range of - 4.3 kcal/mol and - 6.1 kcal/mol, while for α-glucosidase it was obtained in the range of - 3.7 kcal/mol and - 5.7 kcal/mol. The biological activities of B. vulgaris are closely related to the active compounds it contains, and therefore studies investigating the phytochemical contents of plants are very important. Safe and non-toxic plant extracts can help reduce the risk of various diseases, such as diabetes, and serve as an alternative or complement to current pharmaceutical practices.

Keywords: Beta vulgaris; Bioactivity; GC–MS; LC–MS/MS; Molecular docking; Phytochemicals.

MeSH terms

  • Acetone / analysis
  • Antioxidants / pharmacology
  • Beta vulgaris* / metabolism
  • Betacyanins
  • Betaxanthins
  • Chromatography, Liquid
  • Coumaric Acids / analysis
  • Diabetes Mellitus*
  • Gas Chromatography-Mass Spectrometry
  • Liquid Chromatography-Mass Spectrometry
  • Methanol / chemistry
  • Molecular Docking Simulation
  • Phytochemicals / chemistry
  • Phytol
  • Plant Extracts / chemistry
  • Plant Extracts / pharmacology
  • Solvents / chemistry
  • Tandem Mass Spectrometry
  • alpha-Amylases
  • alpha-Glucosidases / metabolism

Substances

  • Methanol
  • Acetone
  • Coumaric Acids
  • alpha-Glucosidases
  • Betacyanins
  • Betaxanthins
  • Plant Extracts
  • Solvents
  • alpha-Amylases
  • Phytochemicals
  • Phytol
  • Antioxidants