2021
DOI: 10.31788/rjc.2021.1426320
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UNDERSTANDING PHYTOCHEMICAL ROLES ON α-GLUCOSIDASE INHIBITORY ACTIVITY BASED ON METABOLOMIC APPROACH OF Premna serratifolia LEAVES FROM WEST BORNEO, INDONESIA

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Cited by 2 publications
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“…The extraction and fractionation procedures were carried out as reported by our research group (Hadiarti et al, 2021). The ethyl acetate fraction (16.24 g) is isolated by column chromatography (44 × 3.5 cm) utilizing eluent gradation from hexane, chloroform, and ethanol (100%:0%-0%:100%).…”
Section: Column Chromatography Of Ethyl Acetate Extract Of P Serratif...mentioning
confidence: 99%
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“…The extraction and fractionation procedures were carried out as reported by our research group (Hadiarti et al, 2021). The ethyl acetate fraction (16.24 g) is isolated by column chromatography (44 × 3.5 cm) utilizing eluent gradation from hexane, chloroform, and ethanol (100%:0%-0%:100%).…”
Section: Column Chromatography Of Ethyl Acetate Extract Of P Serratif...mentioning
confidence: 99%
“…Based on our previous research (Hadiarti et al, 2021), the ethyl acetate fraction of P. serratifolia is the best α-glucosidase inhibitor (77.63 ± 0.18 mg Acarbose equivalent (ACAE)/100 g extract) From Figure 1, among 24 subfractions of ethyl acetate, F 12 -F 14 are found to be highly potent inhibitors of α-glucosidase (50.915, 61.041, and 61.746 mmol ACAE/ 100 g extract, respectively). Compared to α-glucosidase inhibition activity of control, F 12 -F 14 subfractions of ethyl acetate are 0.53, 0,63, and 0.64 times than acarbose.…”
Section: α-Glucosidase Inhibitor Activitymentioning
confidence: 99%
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