Livescu Alexandra, Manda Gina, Constantin Carolina, Neagu Monica, Iordachescu Dana
Victor Babes National Institute of Pathology, Bucharest, Romania.
J Cell Mol Med. 2003 Jan-Mar;7(1):73-8. doi: 10.1111/j.1582-4934.2003.tb00205.x.
Membrane potential is involved in the regulation of several immune functions developed by granulocytes. The Na(+)/K(+) gradient across the plasma membrane, mainly generated by the Na(+)/K(+) pump, plays a key role in the maintenance of membrane potential. This study is focused on the correlation between plasma membrane potential and the in vitro receptor - triggered respiratory burst of normal human peripheral granulocytes. The respiratory burst was measured as superoxide anion release by the cytochrome c reduction test and plasma membrane potential was modulated by experimental changes of the extracellular potassium concentration. Results show a differentiated cellular response, depending on the in vivo activation state and on the signals received in vitro by granulocytes via CR3 or FcgammaR. Alteration of the membrane potassium gradient modulates the respiratory burst of unstimulated and CR3-activated cells, whilst it does not seem to significantly interfere with the signals delivered by FcgammaR.
膜电位参与粒细胞所发挥的多种免疫功能的调节。跨质膜的Na⁺/K⁺梯度主要由Na⁺/K⁺泵产生,在维持膜电位方面起关键作用。本研究聚焦于质膜电位与正常人外周血粒细胞体外受体触发的呼吸爆发之间的相关性。通过细胞色素c还原试验测定超氧阴离子释放来衡量呼吸爆发,并通过细胞外钾浓度的实验性变化来调节质膜电位。结果显示,细胞反应存在差异,这取决于体内激活状态以及粒细胞在体外通过CR3或FcγR接收到的信号。膜钾梯度的改变调节未刺激和CR3激活细胞的呼吸爆发,而似乎不会显著干扰FcγR传递的信号。