() is well-known in herbal medicinal systems for its high biological potential. Different parts of the plant are used against insomnia, liver complications, asthma, and biliousness, as well as it is reported to be sedative, emetic, diuretic, antidiabetic antimicrobial, anti-inflammatory, antitumor, hepatoprotective, antihyperglycemic, cardiovascular, immuno-suppressive and central nervous system depressant. Withanolides present in have attracted an immense interest in the scientific field due to their diverse therapeutic applications. The current study deals with chemical and biological evaluation of chloroform, and -butanol fractions of . The activity-guided fractionation of both extracts via multiple chromatographic steps and structure elucidation of pure isolates using spectroscopies (NMR, mass spectrometry, FTIR and UV-Vis) led to the identification of a new withanolide glycoside, withacogulanoside-B () from -butanol extract and five known withanolides from chloroform extract [withanolid J (), coagulin E (), withaperuvin C (), 27-hydroxywithanolide I (), and ajugin E ()]. Among the tested compounds, compound was the most potent -glucosidase inhibitor with = 66.7 ± 3.6 µM, followed by compound (: 407 ± 4.5 µM) and compound (: 683 ± 0.94 µM), while no antiglycation activity was observed with the six isolated compounds. Molecular docking was used to predict the binding potential and binding site interactions of these compounds as -glucosidase inhibitors. Consequently, this study provides basis to discover specific antidiabetic compounds from .

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7464911PMC
http://dx.doi.org/10.3390/biology9080197DOI Listing

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