AI Article Synopsis

  • This study is the first to investigate the phytochemistry of Cynophalla mollis and Colicodendron scabridum, both from the Capparaceae family, identifying several compounds like lupeol and quercetin-3,4'-di-O-rhamnoside.
  • The researchers utilized various purification and identification techniques, including preparative liquid chromatography and NMR spectroscopy, to reveal the structures of these compounds, particularly focusing on the rare flavonoid quercetin-3,4'-di-O-rhamnoside.
  • Although the extracts showed no antioxidant activity at a tested dose of 1 mg/mL, some isolated compounds displayed significant antioxidant capacities, particularly narcissoside, which was the most effective against ABTS radicals

Article Abstract

The phytochemistry of Cynophalla mollis (Kunth) J. Presl and Colicodendron scabridum (Kunth), both belonging to the family Capparaceae, were investigated in this study for the first time. Lupeol, betulin, lutein, stachydrine and quercetin-3,4'-di-O-rhamnoside were isolated from C. mollis, whereas C. scabridum afforded lupeol, lutein, stachydrine, β-sitosterol, stigmasterol, betonicine and narcissoside. All these compounds were purified by preparative liquid chromatography, in both open column and instrumental (MPLC) separation systems. Preparative TLC was also applied. They were all identified by H- and C-NMR experiments. The complete structure of the very rare flavonoid quercetin-3,4'-di-O-rhamnoside was fully elucidated through DEPT-135, COSY, HMQC and HMBC experiments, together with UV/VIS and FT-IR spectrophotometry. Complete NMR data for quercetin-3,4'-di-O-rhamnoside in deuterated methanol were presented here for the first time. All the extracts did not exert antioxidant activity at the maximum tested dose of 1 mg/mL. Three out of the nine isolated compounds exerted a good spectrum of antioxidant capacity, being narcissoside the most active against ABTS radicals, with SC =12.43 μM. It was followed by lutein and quercetin-3,4'-di-O-rhamnoside, with 40.92 μM and 46.10 μM, respectively.

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Source
http://dx.doi.org/10.1002/cbdv.202100260DOI Listing

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