نتایج جستجو برای: pennogenin steroidal saponins

تعداد نتایج: 18437  

Journal: :Chemical and Pharmaceutical Bulletin 1999

2014
Bharathi Avula Yan-Hong Wang Mei Wang Zulfiqar Ali Troy J. Smillie Ikhlas A. Khan Jerry A. Zweigenbaum

A fast and effective UHPLC/QTOF‐MS method using a simple methanol extraction has been developed to determine the structural characteristics of steroidal saponins from dried rhizomes of two Dioscorea species (D. villosa L. and D. cayenensis Lam.) and dietary supplements. The saponins were identified or tentatively characterized from their retention times and mass spectra and the fragmentation pa...

Journal: :Mini reviews in medicinal chemistry 2011
F de Costa A C A Yendo J D Fleck G Gosmann A G Fett-Neto

Saponins can be classified as triterpenoid (C30) or steroidal (C27), based on their carbon nucleus (aglycone). Sugar residues are linked to the aglycone, conferring an amphiphilic nature on these molecules, which is relevant for their biological activities. Saponins include a large variety of molecules that find several applications in pharmacology. Saponins have been shown to display immunoadj...

2018
Dorota Kregiel Joanna Berlowska Izabela Witonska Hubert Antolak Charalampos Proestos Mirko Babic Ljiljana Babic Bolin Zhang

Plants have the ability to synthesize almost unlimited number of substances. In many cases, these chemicals serve in plant defense mechanisms against microorganisms, insects, and herbivores. Generally, any part of the plant may contain the various active ingredients. Among the plant, active compounds are saponins, which are traditionally used as natural detergents. The name ‘saponin’ comes from...

2010
Marina A. Naoumkina Luzia V. Modolo David V. Huhman Ewa Urbanczyk-Wochniak Yuhong Tang Lloyd W. Sumner Richard A. Dixon Samuel Roberts

Saponins, an important group of bioactive plant natural products, are glycosides of triterpenoid or steroidal aglycones (sapogenins). Saponins possess many biological activities, including conferring potential health benefits for humans. However, most of the steps specific for the biosynthesis of triterpene saponins remain uncharacterized at the molecular level. Here, we use comprehensive gene ...

2016
Jiang-Ming Cui Li-Ping Kang Yang Zhao Jian-Yuan Zhao Jie Zhang Xu Pang He-Shui Yu De-Xian Jia Chao Liu Li-Yan Yu Bai-Ping Ma

Eleven new furostanol saponins, typaspidosides B-L (1-11), one new spirostanol saponin, typaspidoside M (12), and five known spirostanol saponins, 25S-atropuroside (13), neoaspidistrin (14), (25S)-pratioside D1 (15), 25S-aspidistrin (16) and 25S-neosibiricoside (17) were isolated from the rhizomes of Aspidistra typica Baill. The structures of the new compounds were established using 1D and 2D N...

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