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<title>Saudi Pharmaceutical Journal January 2024</title>
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<place><placeTerm type="text">Arab Saudi</placeTerm></place>
<publisher>University of Jeddah</publisher>
<dateIssued>2024</dateIssued>
<issuance>monographic</issuance>
<edition>January 2024</edition>
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<languageTerm type="text">Indonesia</languageTerm>
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<note>ABSTRACT
Traditional medicinal plants have played a promising role in the human health system. In folklore medicine,
Crotalaria quinquefolia L. is used to treat fever, pain, eczema, impetigo, lung infections, scabies. The present
investigation was executed to identify secondary metabolites responsible for anti-diabetic potential of
C. quinquefolia L. leaf extract along with their possible mechanistic pathways. The anti-hyperglycemic activity
was assessed by in vitro &alpha;-amylase and &alpha;-glucosidase inhibitory assays and an in vivo oral glucose tolerance test
and diabetogenic effect of streptozotocin in mice, followed by an integrative computational analysis. A total of 23
compounds were identified through GCMS and HPLC. The extract showed potent in-vitro &alpha;-amylase and
&alpha;-glucosidase suppressive activity with IC50 values of 12.8 &plusmn; 0.1 &mu;g/mL and 36.3 &plusmn; 0.07 &mu;g/mL, respectively. In
an in vivo oral glucose tolerance test, the extract (400 mg/kg body weight) prompted blood glucose levels to
plummet by 18.9 % after 30 min, compared to the normal control and streptozotocin induced diabetes test,

maximum glucose reduction was observed 11.67 % by dose of 200 mg/kg compared to the control; glibencla-
mide and extract (400 mg/kg) reduced blood glucose levels by 1.3 % and 16.7 %, respectively, compared to

diabetic control at the end of the trial. Additionally, among the identified compounds, myricetin, quercetin,
rutin, and kaempferol revealed good binding affinity as well as stability with the studied anti-diabetic proteins in
docking and molecular dynamics simulation studies. Furthermore, QSAR analysis and network pharmacology
studies of the identified compounds divulged enhanced insulin secretion stimulation, insulin receptor kinase
activity, PPAR&gamma; expression; enzyme inhibition (&alpha;-glucosidase, &alpha;-amylase) and protection of the pancreas
-mediated antidiabetic effects. Besides, they proved strong inhibitory potential against the studied antidiabetic
proteins in other computational analysis. Based on the present findings, it can be affirmed that C. quinquefolia extract possesses anti-diabetic activity.</note>
<subject authority=""><topic>Computational study</topic></subject>
<subject authority=""><topic>Enzyme activity</topic></subject>
<subject authority=""><topic>QSAR study</topic></subject>
<subject authority=""><topic>Antidiabetic activity</topic></subject>
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<physicalLocation>PERPUSTAKAAN SEKOLAH TINGGI ILMU KESEHATAN SAMARINDA REPOSITORY</physicalLocation>
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<numerationAndChronology type="1">JIN176</numerationAndChronology>
<sublocation>Perpus.Akfarsam (Jurnal Farmasi Internasional)</sublocation>
<shelfLocator>615 SAU s</shelfLocator>
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