Shier W T, DuBourdieu D J
Prostaglandins. 1986 Jun;31(6):1145-57. doi: 10.1016/0090-6980(86)90216-9.
Moderately high molecular weight polycations stimulate arachidonic acid release with concomitant synthesis and release of prostaglandins in cultured 3T3 mouse fibroblasts. We have examined a series of synthetic polycations for prostaglandin synthesis-inducing activity as an approach to defining the structural features required for activity. Extensive (greater than 80%) acetylation of poly(vinylamine) was tolerated without loss of activity, indicating that a uniform high density of charges is not required. However, complete acetylation of poly(vinylamine) abolished activity, indicating that some positive charges are required for activity. full activity was observed for charge densities in the range of one per two to one per six atoms of polymer backbone. Branched and linear polycations activated equally well. Location of the charge with respect to the polymer backbone did not affect activity in polymers bearing charges located up to seven atoms away from the backbone. Polycations lacking primary or secondary amino groups exhibited full activity, indicating that Schiff base formation is not required for activity. These results are consistent with a model in which activation involves electrostatic interactions with discrete anionic sites on the target cell.
中等高分子量的聚阳离子可刺激培养的3T3小鼠成纤维细胞释放花生四烯酸,并伴随前列腺素的合成与释放。我们已检测了一系列合成聚阳离子的前列腺素合成诱导活性,以此来确定活性所需的结构特征。聚(乙烯胺)的广泛(大于80%)乙酰化可被耐受且不失活性,这表明不需要均匀的高密度电荷。然而,聚(乙烯胺)的完全乙酰化会消除活性,这表明活性需要一些正电荷。在每两个至每六个聚合物主链原子中有一个电荷密度的范围内观察到了完全活性。支链和线性聚阳离子的激活效果相同。相对于聚合物主链的电荷位置对距离主链多达七个原子处带有电荷的聚合物的活性没有影响。缺乏伯氨基或仲氨基的聚阳离子表现出完全活性,这表明活性不需要席夫碱的形成。这些结果与一个模型一致,在该模型中,激活涉及与靶细胞上离散阴离子位点的静电相互作用。