Red algae of Laurencia continue to provide wide structural diversity and complexity of halogenated C15 acetogenin medium-ring ethers. Here, we described the isolation of three new C15 acetogenins (3–5), and one truncated derivative (6) from Laurencia viridis collected on the Canary Islands. These compounds are interesting variations on the pinnatifidenyne structure that included the first examples of ethynyl oxirane derivatives (3–4). The structures were elucidated by extensive study of NMR (Nuclear Magnetic Resonance) data, J-based configuration analysis and DFT (Density Functional Theory) calculations. Their antiproliferative activity against six human solid tumor cell lines was evaluated
A new C15-acetogenin, sagonenyne (20), exhibiting an unusual single tetrahydropyran ring was isolate...
Chromatographic fractionation of the CH2Cl2/MeOH extract of the Red Sea red alga Laurencia obtusa ga...
The chemical investigation of an ethyl acetate extract (EtOAc) obtained from Laurencia obtusa, colle...
Red algae of Laurencia continue to provide wide structural diversity and complexity of halogenated C...
Five new C15 acetogenin en-ynes (1-5) with a rare tetrahydrofuran moiety and a linear biosynthetic p...
Two new C15-acetogenins, 4-epi-isolaurallene (1) and 4-epi-itomanallene A (2) were isolated from a p...
AbstractAcetogenins are secondary metabolites derived from the polyketide pathway and their potentia...
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...
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...
Five new C(15) acetogenin en-ynes (1-5) with a rare tetrahydrofuran moiety and a linear biosynthetic...
Five new C(15) acetogenin en-ynes (1-5) with a rare tetrahydrofuran moiety and a linear biosynthetic...
Three new rare C12 acetogenins (enyne derivatives 1⁻3) were isolated from the organic extract ...
NMR chemical profiling of a <i>Laurenciella</i> sp. using a computerized method developed in our lab...
A new C15-acetogenin, sagonenyne (20), exhibiting an unusual single tetrahydropyran ring was isolate...
Chromatographic fractionation of the CH2Cl2/MeOH extract of the Red Sea red alga Laurencia obtusa ga...
The chemical investigation of an ethyl acetate extract (EtOAc) obtained from Laurencia obtusa, colle...
Red algae of Laurencia continue to provide wide structural diversity and complexity of halogenated C...
Five new C15 acetogenin en-ynes (1-5) with a rare tetrahydrofuran moiety and a linear biosynthetic p...
Two new C15-acetogenins, 4-epi-isolaurallene (1) and 4-epi-itomanallene A (2) were isolated from a p...
AbstractAcetogenins are secondary metabolites derived from the polyketide pathway and their potentia...
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...
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...
Five new C(15) acetogenin en-ynes (1-5) with a rare tetrahydrofuran moiety and a linear biosynthetic...
Five new C(15) acetogenin en-ynes (1-5) with a rare tetrahydrofuran moiety and a linear biosynthetic...
Three new rare C12 acetogenins (enyne derivatives 1⁻3) were isolated from the organic extract ...
NMR chemical profiling of a <i>Laurenciella</i> sp. using a computerized method developed in our lab...
A new C15-acetogenin, sagonenyne (20), exhibiting an unusual single tetrahydropyran ring was isolate...
Chromatographic fractionation of the CH2Cl2/MeOH extract of the Red Sea red alga Laurencia obtusa ga...
The chemical investigation of an ethyl acetate extract (EtOAc) obtained from Laurencia obtusa, colle...