Department of Biomedical Engineering, University of California, Davis, CA, USA.
Department of Nutrition, University of California, Davis, CA, USA.
Sci Rep. 2017 Aug 15;7(1):8196. doi: 10.1038/s41598-017-08417-9.
Atherosclerosis impacts arteries where disturbed blood flow renders the endothelium susceptible to inflammation. Cytokine activation of endothelial cells (EC) upregulates VCAM-1 receptors that target monocyte recruitment to atherosusceptible regions. Endoplasmic reticulum (ER) stress elicits EC dysregulation in metabolic syndrome. We hypothesized that ER plays a central role in mechanosensing of atherosusceptible shear stress (SS) by signaling enhanced inflammation. Aortic EC were stimulated with low-dose TNFα (0.3 ng/ml) in a microfluidic channel that produced a linear SS gradient over a 20mm field ranging from 0-16 dynes/cm. High-resolution imaging of immunofluorescence along the monolayer provided a continuous spatial metric of EC orientation, markers of ER stress, VCAM-1 and ICAM-1 expression, and monocyte recruitment. VCAM-1 peaked at 2 dynes/cm and decreased to below static TNFα-stimulated levels at atheroprotective-SS of 12 dynes/cm, whereas ICAM-1 rose to a maximum in parallel with SS. ER expansion and activation of the unfolded protein response also peaked at 2 dynes/cm, where IRF-1-regulated VCAM-1 expression and monocyte recruitment also rose to a maximum. Silencing of PECAM-1 or key ER stress genes abrogated SS regulation of VCAM-1 transcription and monocyte recruitment. We report a novel role for ER stress in mechanoregulation at arterial regions of atherosusceptible-SS inflamed by low-dose TNFα.
动脉粥样硬化影响血流紊乱的动脉,使内皮易受炎症影响。细胞因子激活内皮细胞(EC)上调 VCAM-1 受体,将单核细胞募集到易受动脉粥样硬化影响的区域。内质网(ER)应激在内质网应激中引起 EC 代谢综合征的失调。我们假设 ER 在通过信号增强炎症来感知易受动脉粥样硬化影响的切应力(SS)方面发挥着核心作用。在微流控通道中,用低剂量 TNFα(0.3ng/ml)刺激主动脉 EC,该通道在 20mm 范围内产生线性 SS 梯度,范围从 0 到 16 dynes/cm。沿着单层进行高分辨率免疫荧光成像提供了 EC 方向的连续空间度量、ER 应激标志物、VCAM-1 和 ICAM-1 表达以及单核细胞募集。VCAM-1 在 2 dynes/cm 时达到峰值,并在保护性 SS 为 12 dynes/cm 时降至低于静态 TNFα 刺激水平,而 ICAM-1 与 SS 平行上升至最大值。ER 扩张和未折叠蛋白反应的激活也在 2 dynes/cm 时达到峰值,IRF-1 调节的 VCAM-1 表达和单核细胞募集也达到峰值。沉默 PECAM-1 或关键 ER 应激基因可阻断 SS 对 VCAM-1 转录和单核细胞募集的调节。我们报告了 ER 应激在低剂量 TNFα 炎症易受动脉粥样硬化影响的动脉区域机械调节中的新作用。