Faculty of Biology, Lomonosov Moscow State University, Moscow, 119234, Russia.
Biochemistry (Mosc). 2022 Jun;87(6):489-499. doi: 10.1134/S0006297922060013.
Hyperosmotic stimulation of endothelial cells often leads to its dysfunction accompanied, among other things, by proinflammatory response. The mechanisms of this phenomenon are not fully understood. It may arise due to increase in the plasma Na+ concentration, due to increase in the extracellular osmolarity, increase in the intracellular Na+/K+ ratio, and/or change in the cell stiffness. In the present study we investigated the effects of short-term increase in osmolarity of extracellular medium on the mRNA content of some genes important for endothelial function (including Na+/K+-sensitive ones) and the equivalent elasticity constant of human umbilical vein endothelial cells membranes. Hyperosmotic stimulation of these cells with NaCl but not mannitol resulted in accumulation of Na+ ions inside the cells despite the Na,K-ATPase activation, and was also accompanied by the decrease in their equivalent elasticity constant. The amount of IL1α mRNA decreased with increasing osmolarity of the extracellular medium, whereas the amount of ATF3, PAR2, and PTGS2 mRNAs increased only in response to the increasing NaCl concentration. At the same time, under the conditions of our experiments, we did not detect changes in the expression of the osmoprotective transcription factor NFAT5. The obtained data indicate that the increase of extracellular Na+ concentration in the physiological range is an independent factor that affects intracellular Na+/K+ ratio and regulates expression of some genes (in particular, ATF3, PAR2, PTGS2) in endothelial cells.
内皮细胞的高渗刺激通常会导致其功能障碍,伴随炎症反应等。这种现象的机制尚未完全阐明。它可能是由于血浆 Na+浓度增加、细胞外渗透压增加、细胞内 Na+/K+比值增加和/或细胞硬度变化引起的。在本研究中,我们研究了短期增加细胞外介质渗透压对一些对内皮功能重要的基因(包括对 Na+/K+敏感的基因)的 mRNA 含量和人脐静脉内皮细胞膜等效弹性常数的影响。用 NaCl 而不是甘露醇刺激这些细胞的高渗,尽管激活了 Na,K-ATP 酶,但细胞内仍会积累 Na+离子,并且其等效弹性常数也会降低。随着细胞外介质渗透压的增加,IL1α mRNA 的量减少,而 ATF3、PAR2 和 PTGS2 mRNA 的量仅在增加 NaCl 浓度时增加。同时,在我们的实验条件下,我们没有检测到 NFAT5 这种渗透压保护转录因子表达的变化。所得数据表明,细胞外 Na+浓度在生理范围内的增加是一个独立的因素,它影响细胞内 Na+/K+比值,并调节内皮细胞中某些基因(特别是 ATF3、PAR2、PTGS2)的表达。