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Cytotoxic Secondary Metabolites from the Endolichenic Fungus Hypoxylon fuscum

Planta Medica, 2019
As part of our search for new cytotoxic and antimicrobial natural products from endolichenic fungi, 19 compounds including 1 new 10-member lactone (2), 1 new polyacetylene glycoside (3), 1 new brasilane-type sesquiterpenoid glycoside (4), and 2 ...
B. Basnet   +7 more
semanticscholar   +3 more sources

Polyketides from the endolichenic fungus Eupenicillium javanicum and their anti-inflammatory activities.

Phytochemistry, 2019
Seven undescribed polyketides javanicols A-E, 5-epi-citreoviridin and 5-epi-isocitreoviridin, together with five known compounds, were isolated from the endolichenic fungus Eupenicillium javanicum.
Ke Xu   +9 more
semanticscholar   +4 more sources

New diketopiperazine dimers and 4-hydroxyphenylacetates from an endolichenic fungus Aspergillus sp.

Fitoterapia
Two novel diketopiperazine dimers (1 and 2) and two new 4-hydroxyphenylacetates (5 and 6), along with two previously known diketopiperazine dimers were isolated from the culture of the endolichenic fungus Aspergillus sp. CPCC 400810.
Bingjie Su   +9 more
semanticscholar   +3 more sources

Xylaricins A-I: Dearomatic xanthone derivatives from endolichenic fungus Xylaria sp. LCSS1a.

Phytochemistry
Chemical investigation of the ethyl acetate extract of the endolichenic fungus Xylaria sp. LCSS1a resulted in the isolation and identification of 24 natural metabolites.
Wenge Zhang   +10 more
semanticscholar   +3 more sources

Four New Cytotoxic Arborinane-Type Triterpenes from the Endolichenic Fungus Myrothecium inundatum

Planta Medica, 2019
Two new arborinane-type triterpenes, myrotheols A (1) and B (2), two new arborinane-type glycosides, myrothesides C (3) and D (4), together with four known diterpenes (5 – 8) were isolated from the ethyl acetate extract of the endolichenic fungus ...
B. Basnet   +8 more
semanticscholar   +3 more sources

Asperunguisins A-F, Cytotoxic Asperane Sesterterpenoids from the Endolichenic Fungus Aspergillus unguis.

Journal of Natural Products, 2019
Six new asperane-type sesterterpenoids, asperunguisins A-F (1-6), were isolated from the endolichenic fungus Aspergillus unguis, together with a known analogue, aspergilloxide (7); these are rare asperane-type sesterterpenoids, characterized by a unique ...
Yuelan Li   +5 more
semanticscholar   +3 more sources

Daldipyrenones A-C: Caged [6,6,6,6,6] Polyketides Derived from an Endolichenic Fungus Daldinia pyrenaica 047188.

Organic Letters, 2023
Daldipyrenones A-C (1-3), three unprecedented caged xanthone [6,6,6,6,6] polyketides featuring a spiro-azaphilone unit, were discovered from an endolichenic fungus, Daldinia pyrenaica 047188.
Seungjin Lee   +11 more
semanticscholar   +1 more source

A New Fatty Acid from the Endolichenic Fungus Massarina sp.

Chemistry of Natural Compounds, 2015
A new fatty acid, (11S,12S,13R)-11,13-dihydroxy-12-methyltetradecanoic acid (1), along with three known metabolites, cyclo-(S-Pro-R-Leu) (2), 3,4-dihydro-3,4,8-trihydroxy(2H)naphthalenone (3), and 4-hydroxybenzeneethanol (4), were isolated from the endolichenic fungus Massarina sp. Their structures were determined unequivocally by physical and spectral
Chao Yuan, Gang Li, Zun-Tian Zhao
exaly   +2 more sources

Discovery of Naphthol Tetramers from Endolichenic Fungus Daldinia childiae 047219 Based on MS/MS Molecular Networking.

Journal of Natural Products, 2023
Feature-based molecular networking analysis suggested the presence of naphthol tetramers in Daldinia childae 047219, the same species but a different strain from one used previously for the discovery of naphthol trimers promoting adiponectin synthesis ...
Jaekyeong Kim   +6 more
semanticscholar   +1 more source

Active Metabolites from Endolichenic Fungus Talaromyces sp.

Chemistry & Biodiversity, 2018
AbstractThe active metabolites investigation of Talaromyces sp. (strain No. MH551540) associated with Xanthoparmelia angustiphylla afforded one new δ‐lactone, talaromycin A (1), together with six known compounds, clearanol A (2), 6‐methylbiphenyl‐3,3′,4,5′‐tetraol (3), desmethylaltenusin (4), ergone (5), ergosterol (6), and palmitic acid (7).
Wei-Hua, Yuan   +6 more
openaire   +2 more sources

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