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Journal ArticleDOI

Rapid preparative isolation of erythrocentaurin from Enicostemma littorale by medium-pressure liquid chromatography, its estimation by high-pressure thin-layer chromatography, and its α-amylase inhibitory activity

TLDR
Estimation of erythrocentaurin in extracts and fractions based on high-pressure thin-layer chromatography was carried out on silica gel 60 F(254) plates with toluene/ethyl acetate/formic acid as the mobile phase and showed good linearity in the concentration range of 200-1500 ng/band.
Abstract
Erythrocentaurin is a relatively simple natural product present among the members of Gentianaceae. A preparative method for the isolation of erythrocentaurin from the ethyl acetate fraction of Enicostemma littorale using medium-pressure liquid chromatography has been reported. The method consisted of a simple step gradient from 10 to 20% ethyl acetate in n-hexane. Using a 70 × 460 mm Si60 column, this method is capable of processing 20 g of material in <3 h (purity ≈ 97%). The recovery of erythrocentaurin was 87.77%. Estimation of erythrocentaurin in extracts and fractions based on high-pressure thin-layer chromatography was carried out on silica gel 60 F(254) plates with toluene/ethyl acetate/formic acid (80:18:2 v/v/v) as the mobile phase. The densitometric analysis was performed at 230 nm. A well-separated compact band of erythrocentaurin appeared at R(f )0.54 ± 0.04. The analytical method showed good linearity in the concentration range of 200-1500 ng/band with a correlation coefficient of 0.99417. The limits of detection and quantification were found to be ≈60 and ≈180 ng/band, respectively. Erythrocentaurin exhibited a concentration-dependent α-amylase inhibition (IC(50) 1.67 ± 0.28 mg/mL). The outcome of the study should be considered for pharmacokinetic and biotransformation studies involving E. littorale.

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Two-dimensional hydrophilic interaction chromatography × reversed-phase liquid chromatography for the preparative isolation of potential anti-hepatitis phenylpropanoids from Salvia prattii

TL;DR: An off-line hydrophilic interaction liquid Chromatography/reversed-phase liquid chromatography preparative method was developed for the purification of phenylpropanoids with high purity from a crude sample of Salvia prattii, and showed great potential in the preparation of phenolpropanoid.
Journal ArticleDOI

Swertiamarin Contributes to Glucose Homeostasis via Inhibition of Carbohydrate Metabolizing Enzymes

TL;DR: The studies in starch and sucrose challenged mice showed that swertiamarin effectively restricted the increase in the peak blood glucose level (BGL), which was effective in the achieving stricter glycemic control in carbohydrate challenged mice through the inhibition of carbohydrate metabolizing enzymes.
Journal ArticleDOI

Combination of SYBR Green II and TaqMan Probe in the adulteration detection of Dendrobium devonianum by fluorescent quantitative PCR

TL;DR: This study developed two assays capable of detecting D. devonianum in commercial samples labelled as ‘Zipi Fengdou’ based on SYBR Green II and TaqMan probe real-time PCR and specifically and sensitively distinguished the processed FengdOU’ sample of D.ÂDevonianum from those of adulterant Dendrobium species.
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Standardized Extract from Enicostemma littorale Ameliorates Post-prandial Hyperglycaemia in Normal and Diabetic Rats

TL;DR: The present study clearly indicates the beneficial effects of swertiamarin-rich fraction of E. littorale in controlling post prandial hyperglycemia through the inhibition of carbohydrate metabolizing enzymes in in-vitro and in- vivo studies.
References
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Rapid chromatographic technique for preparative separations with moderate resolution

Abstract: (11) Potassium ferricyanide has previously been used to convert w'c-1,2-dicarboxylate groups to double bonds. See, for example, L. F. Fieser and M. J. Haddadln, J. Am. Chem. Soc., 86, 2392 (1964). The oxidative dldecarboxylation of 1,2-dlcarboxyllc acids is, of course, a well-known process. See Inter alia (a) C. A. Grob, M. Ohta, and A. Weiss, Helv. Chim. Acta, 41, 1911 (1958); and (b) E. N. Cain, R. Vukov, and S. Masamune, J. Chem. Soc. D, 98 (1969).
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Inhibitory potential of trilobatin from Lithocarpus polystachyus Rehd against α-glucosidase and α-amylase linked to type 2 diabetes

TL;DR: In this article, the chemical structure of trilobatin from Lithocarpus polystachyus Rehd was identified on the basis of HPLC, EIS-MS and NMR analyses.
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Effect of chronic treatment with Enicostemma littorale in non-insulin-dependent diabetic (NIDDM) rats

TL;DR: The data suggest that aqueous extract of E. littorale is a potent herbal antidiabetic that produces an increase in insulin sensitivity, normalizes dyslipidaemia and provides nephroprotection in diabetic rats.
Journal ArticleDOI

A comprehensive metabolite profiling of Isatis tinctoria leaf extracts

TL;DR: More than 65 compounds belonging to various structural classes such as alkaloids, flavonoids, fatty acids, porphyrins, lignans, carotenoids, glucosinolates and cyclohexenones were identified, and tentative structures were proposed for additional compounds.
Journal ArticleDOI

Effect of methanolic extract of Enicostemma littorale on Dalton's ascitic lymphoma.

TL;DR: The antitumour activity of methanolic extract of Enicostemma littorale has been evaluated against Dalton's ascitic lymphoma in swiss albino mice and was found to enhance peritoneal cell counts.
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