Saponin and Fatty Acid Profiling of the Sea Cucumber Holothuria atra , α-Glucosidase Inhibitory Activity and the Identification of a Novel Triterpene Glycoside

Saponin-rich sea cucumber extracts have shown antidiabetic effects in a few reports. Although the triterpene glycosides of sea cucumbers are commonly isolated from their Cuvierian tubules, these are absent in Jaeger. Therefore, this study intended to investigate the saponin profile in the body wall...

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Veröffentlicht in:Nutrients 2023-02, Vol.15 (4), p.1033
Hauptverfasser: Puspitasari, Yunita Eka, Tuenter, Emmy, Foubert, Kenn, Herawati, Herawati, Hariati, Anik Martinah, Aulanni'am, Aulanni'am, Pieters, Luc, De Bruyne, Tess, Hermans, Nina
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Sprache:eng
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Zusammenfassung:Saponin-rich sea cucumber extracts have shown antidiabetic effects in a few reports. Although the triterpene glycosides of sea cucumbers are commonly isolated from their Cuvierian tubules, these are absent in Jaeger. Therefore, this study intended to investigate the saponin profile in the body wall of , as well as to assess the α-glucosidase inhibitory activity of the extracts. The chemical profiling of sea cucumber extracts was conducted by UPLC-HRMS analysis. This resulted in the tentative identification of 11 compounds, 7 of which have not been reported in the body wall before. Additionally, two triterpene glycosides were purified and their structures were elucidated based on HRMS and NMR data: desholothurin B (1), and a novel epimer, 12-epi-desholothurin B (2). Moreover, the fatty acid profile of the body wall was investigated by GC-MS. It was found that the Me90 fraction of the body wall showed the strongest α-glucosidase inhibitory activity (IC value 0.158 ± 0.002 mg/mL), thus making it more potent than acarbose (IC value 2.340 ± 0.044 mg/mL).
ISSN:2072-6643
2072-6643
DOI:10.3390/nu15041033