The chemical investigation of an ethyl acetate extract (EtOAc) obtained from Laurencia obtusa, collected in Corsica, allowed for the identification of three new compounds (1, 2, and 4) and six known compounds. Compounds 1 to 4 were isolated and fully characterized by a detailed spectroscopic analysis. Compounds 1 and 2 are two C15-acetogenins sharing the same ring system: a tetrahydropyran linked by a methylene to a tetrahydrofuran ring. Compound 1 exhibits a bromoallene unit whereas compound 2 possesses an uncommon α-bromo-α,β-unsaturated aldehyde terminal unit. Compound 4 is the first diterpene exhibiting a 19(4 → 3)abeo-labdane skeleton isolated from a Laurencia species. Isolation of concinndiol (compound 3) together with compound 4 ...
Five new C(15) acetogenin en-ynes (1-5) with a rare tetrahydrofuran moiety and a linear biosynthetic...
The marine red algae of the genus Laurencia have been widely studied for their structurally diverse ...
Red algae of the Laurencia genus contain a wide range of unusual secondary metabolites, many of whic...
The chemical investigation of an ethyl acetate extract (EtOAc) obtained from Laurencia obtusa, colle...
A new C15-acetogenin, sagonenyne (20), exhibiting an unusual single tetrahydropyran ring was isolate...
A new C15-acetogenin, sagonenyne (20), exhibiting an unusual single tetrahydropyran ring was isolate...
NMR chemical profiling of a <i>Laurenciella</i> sp. using a computerized method developed in our lab...
Five new C15 acetogenin en-ynes (1-5) with a rare tetrahydrofuran moiety and a linear biosynthetic p...
Purification of the organic extract of Laurencia obtusa Lamouroux by column chromatography and prepa...
Five new C15 acetogenin en-ynes (1-5) with a rare tetrahydrofuran moiety and a linear biosynthetic p...
Five new C15 acetogenin en-ynes (1-5) with a rare tetrahydrofuran moiety and a linear biosynthetic p...
3 pages, 3 figures, 1 table.-- PMID: 12088448 [PubMed].-- Printed version published Jun 28, 2002.Sup...
Two polybrominated C15-acetogenins (1,2) isolated from a Mediterranean sponge previously and a new p...
Five new C(15) acetogenin en-ynes (1-5) with a rare tetrahydrofuran moiety and a linear biosynthetic...
Five new C15 eight-membered cyclic ethers (1, 3–6) with a characteristic terminal cis ene–yne moiety...
Five new C(15) acetogenin en-ynes (1-5) with a rare tetrahydrofuran moiety and a linear biosynthetic...
The marine red algae of the genus Laurencia have been widely studied for their structurally diverse ...
Red algae of the Laurencia genus contain a wide range of unusual secondary metabolites, many of whic...
The chemical investigation of an ethyl acetate extract (EtOAc) obtained from Laurencia obtusa, colle...
A new C15-acetogenin, sagonenyne (20), exhibiting an unusual single tetrahydropyran ring was isolate...
A new C15-acetogenin, sagonenyne (20), exhibiting an unusual single tetrahydropyran ring was isolate...
NMR chemical profiling of a <i>Laurenciella</i> sp. using a computerized method developed in our lab...
Five new C15 acetogenin en-ynes (1-5) with a rare tetrahydrofuran moiety and a linear biosynthetic p...
Purification of the organic extract of Laurencia obtusa Lamouroux by column chromatography and prepa...
Five new C15 acetogenin en-ynes (1-5) with a rare tetrahydrofuran moiety and a linear biosynthetic p...
Five new C15 acetogenin en-ynes (1-5) with a rare tetrahydrofuran moiety and a linear biosynthetic p...
3 pages, 3 figures, 1 table.-- PMID: 12088448 [PubMed].-- Printed version published Jun 28, 2002.Sup...
Two polybrominated C15-acetogenins (1,2) isolated from a Mediterranean sponge previously and a new p...
Five new C(15) acetogenin en-ynes (1-5) with a rare tetrahydrofuran moiety and a linear biosynthetic...
Five new C15 eight-membered cyclic ethers (1, 3–6) with a characteristic terminal cis ene–yne moiety...
Five new C(15) acetogenin en-ynes (1-5) with a rare tetrahydrofuran moiety and a linear biosynthetic...
The marine red algae of the genus Laurencia have been widely studied for their structurally diverse ...
Red algae of the Laurencia genus contain a wide range of unusual secondary metabolites, many of whic...