Chiu Jeng-Jiann, Lee Pei-Ling, Chang Shun-Fu, Chen Li-Jing, Lee Chih-I, Lin Kurt M, Usami Shunichi, Chien Shu
Division of Medical Engineering Research, National Health Research Institutes, Miaoli, 350, Taiwan, ROC.
J Biomed Sci. 2005;12(3):481-502. doi: 10.1007/s11373-005-4338-4.
We investigate the role of shear stress in regulating the gene expression in endothelial cells (ECs) in response to tumor necrosis factor-alpha (TNF-alpha). ECs were kept in static condition or pre-exposed to a high level (HSS, 20 dynes/cm2) or a low level of shear stress (LSS, 0.5 dynes/cm2) for 24 h, and TNF-alpha was added under static condition for 4 h. In static ECs, DNA microarray showed that TNF-alpha caused a significant increase in expression of 102 genes and a significant decrease in expression of 12 genes. Pre-shearing of ECs decreased the TNF-alpha-responsiveness of many pro-inflammatory, pro-coagulant, proliferative, and pro-apoptotic genes, whereas it increased the responsiveness of some antioxidant, anti-coagulant, and anti-apoptotic genes. LSS showed less regulatory effects than HSS on EC gene expression in response to TNF-alpha. The microarray data were confirmed by reverse-transcription polymerase chain reaction for 64 selected genes. Pre-shearing of ECs at HSS significantly inhibited the TNF-alpha-induced p65 and p50 mRNA expressions and nuclear factor-kappaB (NF-kappaB)-DNA binding activity. Inhibition of NF-kappaB activity with the p65-antisense or lactacystin under static condition blocked the expression of most of the genes that are TNF-alpha-inducible and shear stress-down-regulated. Our findings suggest that laminar shear stress serves protective functions against atherogenesis.
我们研究了剪切应力在调节内皮细胞(ECs)响应肿瘤坏死因子-α(TNF-α)时基因表达中的作用。将ECs置于静态条件下,或预先暴露于高水平剪切应力(HSS,20达因/平方厘米)或低水平剪切应力(LSS,0.5达因/平方厘米)下24小时,然后在静态条件下添加TNF-α 4小时。在静态ECs中,DNA微阵列显示TNF-α导致102个基因的表达显著增加,12个基因的表达显著减少。ECs的预剪切降低了许多促炎、促凝血、增殖和促凋亡基因对TNF-α的反应性,而增加了一些抗氧化、抗凝血和抗凋亡基因的反应性。在响应TNF-α时,LSS对EC基因表达的调节作用比HSS小。通过逆转录聚合酶链反应对64个选定基因验证了微阵列数据。在HSS下对ECs进行预剪切显著抑制了TNF-α诱导的p65和p50 mRNA表达以及核因子-κB(NF-κB)与DNA的结合活性。在静态条件下用p65反义寡核苷酸或乳胞素抑制NF-κB活性可阻断大多数TNF-α诱导且剪切应力下调的基因的表达。我们的研究结果表明,层流剪切应力对动脉粥样硬化具有保护作用。