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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >The effect of merulinic acid on biomembranes
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The effect of merulinic acid on biomembranes

机译:巯基酸对生物膜的影响

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摘要

Merulinic acid (heptadecenytresorcinolic acid, resorcinolic acid) is one of the members of resorcinolic lipids, the natural amphiphilic long-chain homologues of orcinol (1,3-dihydroksy-5-methylbenzene). In the present study, membrane properties of merulinic acid were investigated. Merulinic acid exhibits strong haemolytic activity against sheep erythrocytes (EH50 of 5 +/- 2 muM) regardless of the form of its application-direct injection into the erythrocyte suspension or injection as merulinic acid-enriched liposomes. The lysis of erythrocytes induced by merulinic acid was inhibited by the presence of divalent cations. The effectivity of the protection of erythrocytes was highest for Zn2+ and weakest for Mn2+.Merulinic acid at low concentrations also exhibits the ability for protection of cells against their lysis in hypoosmotic solutions. This protective effect is significant as, at 10 muM concentration of merulinic acid, the extent of osmotically induced cell lysis is reduced by approximately 40%. Merulinic acid induces increased permeability of liposomal vesicles. This effect was shown to be dependent on the composition of liposomal bilayer and it was stronger when lipid bilayer contained glycolipids (MGDG and DGDG) and sphingomyelin.Changes of TMA-DPH and NBD-PE fluorescence polarization show that the degree of merulinic acid incorporation into liposomal membrane is not very high. The polar "heads" of the molecules of investigated compounds are localized on the level of fatty acid's ester bonds in phospholipid molecules. Merulinic acid caused the increased fluorescence of the membrane potential fragile probe. This indicated an alteration of the surface charge and a decrease of the local pH at the membrane surface. This effect was visible in both low- and high-ionic strength environment. Merulinic acid causes also a decrease in activity of the membrane-bound enzyme acetylcholinesterase. (C) 2004 Elsevier B.V. All rights reserved.
机译:巯基酸(庚二烯基间戊二酸,间苯二酚酸)是间苯二酚脂质的一种,间苯二酚脂质是天然的两亲性长链同系物(1,3-二氢ksy-5-甲基苯)。在本研究中,对海藻酸的膜性能进行了研究。无论是直接将其直接注射到红细胞悬液中还是以富含巯基酸的脂质体形式注射,巯基酸均表现出针对绵羊红细胞的强溶血活性(EH50为5 +/- 2μM)。二价阳离子的存在抑制了由merulinic酸诱导的红细胞的溶解。红细胞对Zn2 +的保护作用最高,对Mn2 +的保护作用最弱。低浓度的海藻酸还具有保护细胞免受低渗溶液裂解的能力。这种保护作用是显着的,因为在浓度为10μM的海藻酸时,渗透诱导的细胞溶解程度降低了约40%。巯基酸诱导脂质体小泡的通透性增加。已证明这种作用取决于脂质体双层的组成,当脂质双层包含糖脂(MGDG和DGDG)和鞘磷脂时,这种作用更强。TMA-DPH和NBD-PE荧光偏振的变化表明,海藻酸掺入的程度脂质体膜不是很高。被研究化合物分子的极性“头部”位于磷脂分子中脂肪酸酯键的水平上。巯基酸引起膜电位脆弱探针的荧光增加。这表明表面电荷的改变和膜表面局部pH的降低。在低离子强度和高离子强度的环境中都可以看到这种效果。巯基酸还引起膜结合酶乙酰胆碱酯酶的活性降低。 (C)2004 Elsevier B.V.保留所有权利。

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