| Literature DB >> 34116492 |
Kashif Bashir1, Sadia Naz2, Umar Farooq2, Fazli Wahid3, Abdul Jabbar Shah1, Erin P McCauley4, Phillip Crews5, Taous Khan6.
Abstract
The phytochemical profile of Carissa opaca fruit extract and fractions was established through dereplication strategies employing LC-MS/MS and global natural product social molecular networking (GNPS). Crude extract and fractions were evaluated for their potential to inhibit α-glucosidase and urease in vitro. Flavonoid-O-glycosides, flavonoid-C-glycosides, flavonoids, proanthocyanidin B2, phenolics, and triterpenoids were annotated as the major classes of secondary metabolites present in the extract and fractions. α-Glucosidase inhibition was associated with n-butanol and ethyl acetate fractions comparable to acarbose (IC50 = 120.43 µg/mL) with IC50 values of 123.67 and 131.72 µg/mL, respectively. The ethyl acetate fraction showed good urease inhibition comparable with thiourea (IC50 = 103.71 µg/mL) with an IC50 value of 109.14 µg/mL. Molecular docking studies of compounds observed in the crude extract and bioactive fractions had significant binding scores, which supported results for enzyme inhibition in vitro. This study provided a detailed phytochemical profile of C. opaca fruit and its enzyme inhibition potential.Entities:
Keywords: Carissa opaca fruit; LC–MS/MS-based molecular networking; Molecular docking; Polyphenolics; Urease inhibition; α-Glucosidase inhibition
Year: 2021 PMID: 34116492 DOI: 10.1016/j.foodchem.2021.130259
Source DB: PubMed Journal: Food Chem ISSN: 0308-8146 Impact factor: 7.514