M. Assmann
Alfred Wegener Institute for Polar and Marine Research
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Publication
Featured researches published by M. Assmann.
Environmental Toxicology and Pharmacology | 2005
Ulf Bickmeyer; M. Assmann; Matthias Köck; Christian Schütt
A secondary metabolite from sponges of the genus Agelas, 4,5-dibromopyrrole-2-carboxylic acid, which is well known as feeding deterrent, was investigated for effects on the cellular calcium homeostasis in PC12 cells. 4,5-Dibromopyrrole-2-carboxylic acid did not change intracellular calcium levels if applied alone without cell depolarization. During depolarization of the cellular membrane using high potassium solution, a dose dependent reduction of intracellular calcium elevation was revealed utilizing Fura II as calcium indicator. Significant reduction was seen at concentrations higher than 30μM in a series of experiments, but in single experiments a concentration of 300nM was still reversible effective. In the same concentration range, the onset of depolarization induced calcium elevations was significantly delayed by 4,5-dibromopyrrole-2-carboxylic acid. Dose dependent reduction and delay of depolarization evoked calcium elevations are probably due to a reduction of calcium entry via voltage operated calcium channels. One cellular mode of action of the feeding deterrent potential of 4,5-dibromopyrrole-2-carboxylic acid to fishes may be an interaction with the cellular calcium homeostasis of exposed cells.
Zeitschrift für Naturforschung C | 2002
M. Assmann; Matthias Köck
Six dimeric bromopyrrole alkaloids (1-6) were isolated from a Florida Keys specimen of Agelas conifera. One of the constituents was identified as a new bromopyrrole metabolite, bromosceptrin (1). The structure of 1 was established from MS spectrometry and 1D and 2D NMR spectrocopy.
Zeitschrift für Naturforschung C | 2002
M. Assmann; Matthias Köck
A detailed analysis of the chemical constituents of a Caribbean specimen of Agelas sp. was carried out. Four brominated compounds (1-4) were isolated and one of them was identified as a new bromopyrrole metabolite, monobromoisophakellin (1). The structure of 1 was determined using spectroscopic methods. All compounds were tested for their antifeedant activity against the Caribbean reef fish Thalassoma bifasciatum in an aquarium assay.
Marine Ecology Progress Series | 2000
M. Assmann; Ellen Lichte; Joseph R. Pawlik; Matthias Köck
Aquatic Toxicology | 2006
T. Hassenklöver; Sabine Predehl; Jyotsna Pilli; Jessica Ledwolorz; M. Assmann; Ulf Bickmeyer
Toxicon | 2004
Ulf Bickmeyer; Christoph Drechsler; Matthias Köck; M. Assmann
Journal of Natural Products | 2007
Achim Grube; M. Assmann; Ellen Lichte; Florenz Sasse; Joseph R. Pawlik; Matthias Köck
Journal of Natural Products | 2000
Thomas Lindel; Matthias Hochgürtel; M. Assmann; Matthias Köck
Journal of Natural Products | 2001
M. Assmann; R.W.M. van Soest; Matthias Köck
Journal of Natural Products | 2001
M. Assmann; Sven Zea; Matthias Köck