Department of Biological Sciences, University of Bergen, Thormøhlensgate 55, NO-5006 Bergen, Norway.
Department of Environmental Chemistry, Norwegian Geotechnical Institute, Sognsveien 72, 0855 Oslo, Norway.
Mar Drugs. 2020 Feb 19;18(2):125. doi: 10.3390/md18020125.
Marine sponges and soft corals have yielded novel compounds with antineoplastic and antimicrobial activities. Their mechanisms of action are poorly understood, and in most cases, little relevant experimental evidence is available on this topic. In the present study, we investigated whether agelasine D (compound ) and three agelasine analogs (compound -) as well as malonganenone J (compound ), affect the physical properties of a simple lipid model system, consisting of dioleoylphospahtidylcholine and dioleoylphosphatidylethanolamine. The data indicated that all the tested compounds increased stored curvature elastic stress, and therefore, tend to deform the bilayer which occurs without a reduction in the packing stress of the hexagonal phase. Furthermore, lower concentrations (1%) appear to have a more pronounced effect than higher ones (5-10%). For compounds 4 and 5, this effect is also reflected in phospholipid headgroup mobility assessed using P chemical shift anisotropy (CSA) values of the lamellar phases. Among the compounds tested, compound 4 stands out with respect to its effects on the membrane model systems, which matches its efficacy against a broad spectrum of pathogens. Future work that aims to increase the pharmacological usefulness of these compounds could benefit from taking into account the compound effects on the fluid lamellar phase at low concentrations.
海洋海绵和软珊瑚产生了具有抗肿瘤和抗菌活性的新型化合物。它们的作用机制尚不清楚,在大多数情况下,关于这个主题几乎没有相关的实验证据。在本研究中,我们研究了 agelasine D(化合物 )和三种 agelasine 类似物(化合物 -)以及 malonganenone J(化合物 )是否会影响由二油酰基磷酸胆碱和二油酰基磷脂酰乙醇胺组成的简单脂质模型系统的物理性质。数据表明,所有测试的化合物均增加了储存曲率弹性应力,因此,倾向于使双层变形,而不会降低六方相的堆积压力。此外,较低浓度(1%)似乎比较高浓度(5-10%)的效果更明显。对于化合物 4 和 5,这一作用也反映在使用层状相的 P 化学位移各向异性(CSA)值评估的磷脂头部基团流动性上。在所测试的化合物中,化合物 4 在其对膜模型系统的作用方面尤为突出,这与其对广谱病原体的功效相匹配。未来旨在提高这些化合物药理学用途的工作可以受益于考虑到这些化合物在低浓度下对流体层状相的影响。