G.B. Elyakov Pacific Institute of Bioorganic Chemistry, Far East Division of the Russian Academy of Sciences, Vladivostok, 690022, Russia.
Int Immunopharmacol. 2012 Sep;14(1):1-8. doi: 10.1016/j.intimp.2012.05.020. Epub 2012 Jun 6.
The in vitro interactions between triterpene glycoside, cucumarioside A(2)-2, isolated from the Far-Eastern holothurian Cucumaria japonica, and mouse splenocyte and peritoneal macrophage biomembranes were studied. Multiple experimental approaches were employed, including determination of biomembrane microviscosity, membrane potential and Ca(2+) signaling, and radioligand binding assays. Cucumarioside A(2)-2 exhibited strong cytotoxic effect in the micromolar range of concentrations and showed pronounced immunomodulatory activity in the nanomolar concentration range. It was established that the cucumarioside A(2)-2 effectively interacted with immune cells and increased the cellular biomembrane microviscosity. This interaction led to a dose-dependent reversible shift in cellular membrane potential and temporary biomembrane depolarization; and an increase in Ca(2+) in the cytoplasm. It is suggested that there are at least two binding sites for [(3)H]-cucumarioside A(2)-2 on cellular membranes corresponding to different biomembrane components: a low affinity site match to membrane cholesterol that is responsible for the cytotoxic properties, and a high affinity site corresponding to a hypothetical receptor that is responsible for immunostimulation.
从远东海星 Cucumaria japonica 中分离得到的三萜糖苷 cucumarioside A(2)-2 与小鼠脾细胞和腹腔巨噬细胞膜的体外相互作用进行了研究。采用了多种实验方法,包括测定生物膜微粘度、膜电位和 Ca(2+)信号以及放射性配体结合测定。Cucumarioside A(2)-2 在微摩尔浓度范围内表现出强烈的细胞毒性作用,并在纳摩尔浓度范围内表现出明显的免疫调节活性。结果表明,cucumarioside A(2)-2 可有效与免疫细胞相互作用,增加细胞生物膜的微粘度。这种相互作用导致细胞膜电位的剂量依赖性可逆变化和暂时的生物膜去极化;细胞质中Ca(2+)增加。表明细胞生物膜上至少有两个与 [(3)H]-cucumarioside A(2)-2 结合的位点,对应于不同的生物膜成分:与膜胆固醇具有低亲和力的位点,负责细胞毒性作用,与假设的负责免疫刺激的受体具有高亲和力的位点。