Panet R, Markus M, Atlan H
Department of Medical Biophysics and Nuclear Medicine, Hadassah University Hospital, Jerusalem, Israel.
J Cell Physiol. 1994 Jan;158(1):121-7. doi: 10.1002/jcp.1041580115.
In this study, we examined the role of the bumetanide-sensitive Na+/K+/Cl-cotransport in the mitogenic signal of vascular endothelial cell proliferation. The activity of the Na+/K+/Cl- cotransport is dramatically decreased in quiescent subconfluent cells, as compared to subconfluent cells growing in the presence of FGF. The Na+/K+/Cl- cotransport activity of quiescent subconfluent cultures deprived of FGF decreased to 6%, whereas that of quiescent cells grown to confluency was reduced to only 33% of the activity of subconfluent cells growing in the presence of FGF. The basal low activity of Na+/K+/Cl- cotransport in the quiescent subconfluent vascular endothelial cells was dramatically stimulated by FGF. In order to explore the role of the Na+/K+/Cl- cotransport in the mitogenic signal of the endothelial cells, the effect of two specific inhibitors of the cotransport -furosemide and -bumetanide was tested on cell proliferation induced by FGF. Bumetanide and furosemide inhibited synchronized cell proliferation measured by direct counting of cells and by DNA synthesis. Inhibition by furosemide and bumetanide was reversible; removal of these compounds completely released the cells to proliferate. These results indicate that the effect of these drugs is specific and is not due to an indirect toxic effect. This study clearly demonstrates that the FGF-induced activation of the Na+/K+/Cl- cotransport plays a role in the mitogenic signal pathway of vascular endothelial cells.
在本研究中,我们检测了布美他尼敏感的Na⁺/K⁺/Cl⁻共转运在血管内皮细胞增殖的促有丝分裂信号中的作用。与在成纤维细胞生长因子(FGF)存在下生长的亚汇合细胞相比,静止的亚汇合细胞中Na⁺/K⁺/Cl⁻共转运的活性显著降低。缺乏FGF的静止亚汇合培养物的Na⁺/K⁺/Cl⁻共转运活性降至6%,而生长至汇合的静止细胞的该活性仅降至在FGF存在下生长的亚汇合细胞活性的33%。FGF显著刺激了静止亚汇合血管内皮细胞中Na⁺/K⁺/Cl⁻共转运的基础低活性。为了探究Na⁺/K⁺/Cl⁻共转运在内皮细胞促有丝分裂信号中的作用,测试了两种共转运特异性抑制剂——呋塞米和布美他尼对FGF诱导的细胞增殖的影响。布美他尼和呋塞米抑制了通过直接细胞计数和DNA合成测量的同步细胞增殖。呋塞米和布美他尼的抑制作用是可逆的;去除这些化合物后细胞完全恢复增殖。这些结果表明这些药物的作用是特异性的,并非由于间接毒性作用。本研究清楚地表明,FGF诱导的Na⁺/K⁺/Cl⁻共转运激活在血管内皮细胞的促有丝分裂信号通路中起作用。