Login / Signup

Chemical Composition and Anti-Urolithiatic Activity of Extracts from Argania spinosa (L.) Skeels Press-Cake and Acacia senegal (L.) Willd.

Fatima Ezzahra El OumariDalila BoustaHamada ImtaraAnissa LahrichiRadouane ElhabbaniGhita El MouhriOmkulthom Al KamalyAsmaa SalehMohammad Khalid ParvezAndriy V GrafovTarik Sqalli Houssaini
Published in: Molecules (Basel, Switzerland) (2022)
Ethnobotanical studies have reported the traditional medicinal uses of Acacia senegal (L.) Willd. and Argania spinosa (L.) Skeels against kidney stone formation and other chronic kidney diseases. The present work is undertaken to study the litholytic activity and the inhibiting activity of calcium oxalate crystallization by bioactive compounds identified in Argania spinosa (L.) Skeels press-cake (residue of Argan oil) and in Acacia senegal (L.) Willd. The litholytic activity was studied in vitro on cystine and uric acid stones using a porous bag and an Erlenmeyer glass. The study of the inhibiting activity of calcium oxalate crystallization, was based on temporal measurements of the optical density, registered at a 620 nm wavelength for 30 min using an ultraviolet-visible spectrophotometer. The silylation method was performed to identify phytochemicals, followed by gas chromatography coupled with mass spectrophotometry (GC/MS) analysis. The results show significant litholytic activity of Argania Spinosa press-cake hydro-ethanolic extract on uric acid and cystine stones, respectively, with dissolution rates (DR) of 86.38% and 60.42% versus 3.23% and 9.48% for the hydro-ethanolic extract of Acacia senegal  exudate. Furthermore, the percentages of nucleation inhibition are 83.78% and 43.77% ( p ˂ 0.05) for Argania spinosa and Acacia senegal , respectively. The results point to the detection of 17 phytochemicals in Argania spinosa press-cake extract, the majority of which are phenolic acids and have potent anti-urolithiatic action.
Keyphrases
  • uric acid
  • metabolic syndrome
  • oxidative stress
  • mass spectrometry
  • photodynamic therapy
  • fatty acid
  • quantum dots
  • amino acid
  • solid phase extraction
  • editorial comment