Marine organisms rely upon complex bio-chemical systems to manage photo-induced oxidative damage as part of a sophisticated chemical defense. Using a combination of synthetic chemistry and biophysical techniques, we provide evidence to support the notion that marine derived polyene γ-pyrone metabolites of sacoglossan molluscs become localised at cell membranes where they influence the total absorption of the harmful radiation by the lipid membrane, thereby functioning as sunscreen agents. We also report two new hyperperoxide analogues of the putative polyene biosynthetic precursors that themselves are likely candidate natural products
International audiencePhytoplankton is acknowledged to be a very diverse source of bioactive molecul...
International audiencePhytoplankton is acknowledged to be a very diverse source of bioactive molecul...
International audiencePhytoplankton is acknowledged to be a very diverse source of bioactive molecul...
Marine organisms rely upon complex bio-chemical systems to manage photo-induced oxidative damage as ...
This thesis primarily details synthetic and biophysical studies on the tridachiahydropyrone family o...
The sacoglossan mollusc-derived metabolite, tridachiahydropyrone (3), and its proposed biosynthetic ...
This thesis primarily details synthetic and biophysical studies on the tridachiahydropyrone family o...
Sea water is a strong absorber of UV-B radiation. We hypothesized that the photochemical product dis...
In the last few decades, the thinning of the ozone layer due to increased atmospheric pollution has ...
In the last few decades, the thinning of the ozone layer due to increased atmospheric pollution has ...
This article belongs to the Special Issue Antiphotoaging and Photoprotective Compounds from Marine O...
Marine organisms form a prominent component of the oceanic population, which significantly contribut...
Phytoplankton is acknowledged to be a very diverse source of bioactive molecules. These compounds pl...
International audiencePhytoplankton is acknowledged to be a very diverse source of bioactive molecul...
International audiencePhytoplankton is acknowledged to be a very diverse source of bioactive molecul...
International audiencePhytoplankton is acknowledged to be a very diverse source of bioactive molecul...
International audiencePhytoplankton is acknowledged to be a very diverse source of bioactive molecul...
International audiencePhytoplankton is acknowledged to be a very diverse source of bioactive molecul...
Marine organisms rely upon complex bio-chemical systems to manage photo-induced oxidative damage as ...
This thesis primarily details synthetic and biophysical studies on the tridachiahydropyrone family o...
The sacoglossan mollusc-derived metabolite, tridachiahydropyrone (3), and its proposed biosynthetic ...
This thesis primarily details synthetic and biophysical studies on the tridachiahydropyrone family o...
Sea water is a strong absorber of UV-B radiation. We hypothesized that the photochemical product dis...
In the last few decades, the thinning of the ozone layer due to increased atmospheric pollution has ...
In the last few decades, the thinning of the ozone layer due to increased atmospheric pollution has ...
This article belongs to the Special Issue Antiphotoaging and Photoprotective Compounds from Marine O...
Marine organisms form a prominent component of the oceanic population, which significantly contribut...
Phytoplankton is acknowledged to be a very diverse source of bioactive molecules. These compounds pl...
International audiencePhytoplankton is acknowledged to be a very diverse source of bioactive molecul...
International audiencePhytoplankton is acknowledged to be a very diverse source of bioactive molecul...
International audiencePhytoplankton is acknowledged to be a very diverse source of bioactive molecul...
International audiencePhytoplankton is acknowledged to be a very diverse source of bioactive molecul...
International audiencePhytoplankton is acknowledged to be a very diverse source of bioactive molecul...