Sakao Seiichiro, Taraseviciene-Stewart Laimute, Lee Jong Deog, Wood Kathy, Cool Carlyne D, Voelkel Norbert F
The Pulmonary Hypertension Center, University of Colorado Health Sciences Center, Denver, Colorado, USA.
FASEB J. 2005 Jul;19(9):1178-80. doi: 10.1096/fj.04-3261fje. Epub 2005 May 16.
We have demonstrated that VEGF receptor blockade in combination with chronic hypoxia causes in rats severe angioproliferative pulmonary hypertension (SAPH) associated with arterial occlusion by proliferating endothelial cells, and we postulate that the established, lumen-occluding lesions are the result of the emergence of apoptosis-resistant proliferating cells. To study the dependence of exuberant endothelial cell proliferation on initial apoptosis, we adapted the CELLMAX artificial capillary system to analyze the effects of a VEGF receptor antagonist (SU5416) on human pulmonary microvascular endothelial cells under pulsatile shear stress. Immunohistochemical staining for caspase-3 and PCNA and flow cytometry for Annexin-V and BrdU supported our concept, since SU5416 caused initial apoptosis (35.8% at 24 h after the SU5416 addition and 4.8% in control cells) whereas the surviving cells became hyperproliferative (PCNA positive). Flow cytometry showed that apoptosis inhibition prevented the proliferation following the initial apoptosis. These lumen-filling endothelial cells were apoptosis resistant, grew without serum, and were phenotypically altered in that they express the tumor marker survivin. Hyperproliferative apoptosis-resistant cells were also generated by adding apoptosed cells instead of the VEGF receptor blocker to the CELLMAX system. In conclusion, endothelial cell death resulted in the selection of an apoptosis-resistant, proliferating phenotypically altered endothelial cell phenotype.
我们已经证明,在大鼠中,血管内皮生长因子(VEGF)受体阻断与慢性低氧相结合会导致严重的血管增殖性肺动脉高压(SAPH),伴有增殖的内皮细胞引起的动脉闭塞。我们推测,已形成的管腔闭塞性病变是抗凋亡增殖细胞出现的结果。为了研究旺盛的内皮细胞增殖对初始凋亡的依赖性,我们采用CELLMAX人工毛细血管系统,分析VEGF受体拮抗剂(SU5416)在脉动切应力作用下对人肺微血管内皮细胞的影响。半胱天冬酶-3和增殖细胞核抗原(PCNA)的免疫组织化学染色以及膜联蛋白-V和5-溴脱氧尿嘧啶核苷(BrdU)的流式细胞术支持了我们的观点,因为SU5416会引起初始凋亡(添加SU5416后24小时为35.8%,对照细胞为4.8%),而存活的细胞则会过度增殖(PCNA阳性)。流式细胞术显示,凋亡抑制可防止初始凋亡后的增殖。这些填充管腔的内皮细胞具有抗凋亡能力,无需血清即可生长,并且在表型上发生了改变,即它们表达肿瘤标志物生存素。通过向CELLMAX系统中添加凋亡细胞而非VEGF受体阻滞剂,也可产生过度增殖的抗凋亡细胞。总之,内皮细胞死亡导致选择了一种抗凋亡、增殖且表型改变的内皮细胞表型。