Kazama Itsuro, Baba Asuka, Endo Yasuhiro, Toyama Hiroaki, Ejima Yutaka, Matsubara Mitsunobu, Tachi Masahiro
Department of Physiology I, Tohoku University Graduate School of Medicine, Sendai, Miyagi, Japan.
Cell Physiol Biochem. 2015;35(6):2371-82. doi: 10.1159/000374039. Epub 2015 Apr 16.
BACKGROUND/AIMS: Salicylate causes drug-induced immune thrombocytopenia. However, some clinical studies indicate the presence of additional mechanisms in the drug-induced thrombocytopenia, by which the platelet production from megakaryocytes may directly be affected. Since salicylate is amphiphilic and preferentially partitioned into the lipid bilayers of the plasma membrane, it can induce some structural changes in the megakaryocyte membrane surface and thus affect the process of thrombopoiesis.
Employing the standard patch-clamp whole-cell recording technique, we examined the effects of salicylate on the membrane capacitance in rat megakaryocytes. Taking electron microscopic imaging of the cellular surface, we also examined the effects of salicylate on the membrane micro-architecture of megakaryocytes.
Salicylate significantly decreased the membrane capacitance of megakaryocytes, indicating the decreased number of invaginated plasma membranes, which was not detected by the fluorescent imaging technique. As shown by electron microscopy, salicylate actually halted the process of pro-platelet formation in megakaryocytes.
This study demonstrated for the first time that salicylate inhibits the process of thrombopoiesis in megakaryocytes, as detected by the decrease in the membrane capacitance. Salicylate-induced changes in the membrane micro-architecture are thought to be responsible for its effects.
背景/目的:水杨酸盐可导致药物性免疫性血小板减少症。然而,一些临床研究表明,药物性血小板减少症还存在其他机制,通过这些机制,巨核细胞产生血小板的过程可能会直接受到影响。由于水杨酸盐具有两亲性,且优先分配到质膜的脂质双层中,它可诱导巨核细胞膜表面发生一些结构变化,从而影响血小板生成过程。
我们采用标准的膜片钳全细胞记录技术,研究了水杨酸盐对大鼠巨核细胞膜电容的影响。通过对细胞表面进行电子显微镜成像,我们还研究了水杨酸盐对巨核细胞膜微结构的影响。
水杨酸盐显著降低了巨核细胞的膜电容,表明内陷质膜的数量减少,而荧光成像技术未检测到这种减少。如电子显微镜所示,水杨酸盐实际上阻止了巨核细胞中前血小板的形成过程。
本研究首次表明,水杨酸盐可抑制巨核细胞的血小板生成过程,这可通过膜电容的降低检测到。水杨酸盐诱导的膜微结构变化被认为是其作用的原因。