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Steroidal saponins with antimicrobial activity from stems and leaves of Paris polyphylla var. yunnanensis
Rhizoma Paridis, the root of Paris polyphylla var. yunnanensis (Trilliaceae), is a Chinese traditional medicine, which resources become less and less. However, the aerial parts of this herb, whichExpand
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Steroidal saponins from stems and leaves of Paris polyphylla var. yunnanensis.
Phytochemical investigation of the stems and leaves of Paris polyphylla var. yunnanensis led to isolation of 12 steroidal saponins, chonglouosides SL-9-SL-20, which had not been described previously,Expand
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Lindenane disesquiterpenoids with anti-HIV-1 activity from Chloranthus japonicus.
Five new lindenane disesquiterpenoids, chlorajaponilides A-E (1-5), together with 11 known analogues were isolated from whole plants of Chloranthus japonicus. The structure and absolute configurationExpand
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Cytotoxicity of cardenolides and cardenolide glycosides from Asclepias curassavica.
A new cardenolide, 12beta,14beta-dihydroxy-3beta,19-epoxy-3alpha-methoxy-5alpha-card-20(22)-enolide (6), and a new doubly linked cardenolide glycoside, 12beta-hydroxycalotropin (13), together withExpand
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Tigliane-type diterpenoid glycosides from Euphorbia fischeriana.
Investigation of whole plants of Euphorbia fischeriana afforded three new tigliane-diterpenoid glycosides, fischerosides A-C (1-3), together with 11 known diterpenoids. Fischerosides A-C (1-3) areExpand
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Tirucallane-type triterpenoid saponins from the roots of Sapindus mukorossi.
  • W. Ni, Y. Hua, +4 authors C. Chen
  • Chemistry, Medicine
  • Chemical & pharmaceutical bulletin
  • 1 October 2006
Six new tirucallane-type triterpenoid saponins, sapimukosides E-J (1-6) were isolated from the roots of Sapindus mukorossi GAERTN. Their structures were elucidated by a combination of spectral andExpand
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Diets Alter the Gut Microbiome of Crocodile Lizards
The crocodile lizard is a critically endangered reptile, and serious diseases have been found in this species in recent years, especially in captive lizards. Whether these diseases are caused byExpand
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Hedychins A and B, 6,7-Dinorlabdane Diterpenoids with a Peroxide Bridge from Hedychium forrestii.
Hedychins A (1) and B (2), two unprecedented 6,7-dinorlabdane ditepenoids with a peroxide bridge, were obtained from the rhizomes of Hedychium forrestii. Their structures and absolute configurationsExpand
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Baeckfrutones A–L, polymethylated phloroglucinol meroterpenoids from the twigs and leaves of Baeckea frutescens
Abstract Twelve new polymethylated phloroglucinol meroterpenoids (PPMs), baeckfrutones A–L (1–12), were isolated from the twigs and leaves of Baeckea frutescens. Their structures and absoluteExpand
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Japonicones A-C: Three lindenane sesquiterpenoid dimers with a 12-membered ring core from Chloranthus japonicus
Abstract Japonicones A–C (1–3), three new dimeric lindenane-type sesquiterpenoids featuring a rare 12-membered ring framework, were isolated from the whole plants of Chloranthus japonicus Sieb. TheirExpand
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