Laboratory for Research on Biologically Compatible Compounds, Faculty of Dentistry, Rue Avicenne, Monastir 5019, Tunisia.
Lipids Health Dis. 2012 Jun 28;11:84. doi: 10.1186/1476-511X-11-84.
The biodiversity of the marine environment and the associated chemical diversity constitute a practically unlimited source of new active substances in the field of the development of bioactive products. In our study, we have investigated the efficiency of the venom from the Mediterranean jellyfish, Pelagia noctiluca and its fractions for anti-proliferative and anti-cell adhesion to cell-extracellular matrix activities.
Our experiments have indicated that the separation of the Mediterranean jellyfish Pelagia noctiluca crude venom extract by sephadex G-75 chromatography led to four fractions (F1, F2, F3, and F4). Among the four fractions F1 and F3 were cytotoxic against U87 cells with IC50 values of 125 and 179 μg/ml respectively. The venom, F1, F2 and F 3 showed significant anti-proliferative activity in time-dependent manner. Our results also suggest that these fractions and the venom are able to inhibit cell adhesion to fibrinogen in dose-dependent manner. This inhibition is reliant on its ability to interact with integrins.
To conclude, we have demonstrated for the first time that Pelagia noctiluca venom and its fractions especially (F1 and F2) display potent anti-tumoral properties. Separation by sephadex G-75 chromatography give rise to more active fractions than the crude venom extract. The purification and the determination of chemical structures of compounds of these active fractions are under investigation. Overall, Pelagia noctiluca venom may has the potential to serve as a template for future anticancer-drug development.
海洋环境的生物多样性和相关的化学多样性构成了生物活性产物开发领域新活性物质的实际无限来源。在我们的研究中,我们研究了来自地中海水母(Pelagia noctiluca)及其馏分的毒液在抗增殖和抗细胞与细胞外基质黏附活性方面的效率。
我们的实验表明,通过葡聚糖 G-75 层析对地中海水母(Pelagia noctiluca)粗毒液提取物进行分离得到了四个馏分(F1、F2、F3 和 F4)。在这四个馏分中,F1 和 F3 对 U87 细胞具有细胞毒性,IC50 值分别为 125 和 179μg/ml。毒液、F1、F2 和 F3 表现出显著的时间依赖性抗增殖活性。我们的结果还表明,这些馏分和毒液能够以剂量依赖的方式抑制细胞与纤维蛋白原的黏附。这种抑制依赖于其与整合素相互作用的能力。
综上所述,我们首次证明了 Pelagia noctiluca 毒液及其馏分(尤其是 F1 和 F2)具有强大的抗肿瘤特性。通过葡聚糖 G-75 层析分离得到的活性馏分比粗毒液提取物更多。这些活性馏分中化合物的分离和化学结构的确定正在研究中。总体而言,Pelagia noctiluca 毒液可能有潜力成为未来抗癌药物开发的模板。