Antioxidant evaluation and computational prediction of prospective drug-like compounds from polyphen...
Antioxidant evaluation and computational prediction of prospective drug-like compounds from polyphenolic-rich extract of Hibiscus cannabinus L. seed as antidiabetic and neuroprotective targets: assessment through in vitro and in silico studies
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Afolabi, Olakunle Bamikole , Olasehinde, Oluwaseun Ruth , Olanipon, Damilola Grace , Mabayoje, Samson Olatunde , Familua, Olufemi Michael , Jaiyesimi, Kikelomo Folake , Agboola, Esther Kemi , Idowu, Tolulope Olajumoke , Obafemi, Olabisi Tajudeen , Olaoye, Oyindamola Adeniyi and Oloyede, Omotade Ibidun
Publisher
England: BioMed Central Ltd
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English
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Publisher
England: BioMed Central Ltd
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Reports have implicated diabetes mellitus (DM) and Alzheimer's disease (AD) as some of the global persistent health challenges with no lasting solutions, despite of significant inputs of modern-day pharmaceutical firms. This study therefore, aimed to appraise the in vitro antioxidant potential, enzymes inhibitory activities, and as well carry out in silico study on bioactive compounds from polyphenolic-rich extract of Hibiscus cannabinus seed (PEHc).
In vitro antioxidant assays were performed on PEHc using standard methods while the identification of phytoconstituents was carried out with high performance liquid chromatography (HPLC). For the in silico molecular docking using Schrodinger's Grid-based ligand docking with energetics software, seven target proteins were retrieved from the database ( https://www.rcsb.org/ ).
HPLC technique identified twelve chemical compounds in PEHc, while antioxidant quantification revealed higher total phenolic contents (243.5 ± 0.71 mg GAE/g) than total flavonoid contents (54.06 ± 0.09 mg QE/g) with a significant (p < 0.05) inhibition of ABTS (IC
= 218.30 ± 0.87 µg/ml) and 1, 1-diphenyl-2-picrylhydrazyl free radicals...
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Full title
Antioxidant evaluation and computational prediction of prospective drug-like compounds from polyphenolic-rich extract of Hibiscus cannabinus L. seed as antidiabetic and neuroprotective targets: assessment through in vitro and in silico studies
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TN_cdi_doaj_primary_oai_doaj_org_article_282f424c2d58469a96e2116de8e4bde8
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https://devfeature-collection.sl.nsw.gov.au/record/TN_cdi_doaj_primary_oai_doaj_org_article_282f424c2d58469a96e2116de8e4bde8
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ISSN
2662-7671
E-ISSN
2662-7671,1472-6882
DOI
10.1186/s12906-023-04023-7