Masuda M, Fujiwara K
Department of Structural Analysis, National Cardiovascular Center Research Institute, Osaka, Japan.
Biol Cell. 1993;77(3):237-45. doi: 10.1016/s0248-4900(05)80193-5.
To analytically study the morphological responses of vascular endothelial cells (ECs) to fluid flow, we designed a parallel plate flow culture chamber in which cells were cultured under fluid shear stress ranging from 0.01 to 2.0 Pa for several days. Via a viewing window of the chamber, EC responses to known levels of fluid shear stress were monitored either by direct observations or by a video-enhanced time-lapse microscopy. Among the responses of cultured ECs to flow, morphological responses take from hours to days to be fully expressed, except for the fluid shear stress-dependent motility pattern change we reported earlier which could be detected within 30 min of flow changes. We report here that ECs exposed to more than 1.0 Pa of fluid shear stress have developed lamellipodia in the direction of flow in 10 min. This is the fastest structurally identifiable EC response to fluid shear stress. This was a reversible response. When the flow was stopped or reduced to the level which exerted less than 0.1 Pa of fluid shear stress, the biased lamellipodium development was lost within several minutes. The microtubule organizing center was located posterior to the nucleus in ECs under the influence of flow. However, this position was established only in ECs responding to fluid shear stress for longer than 1 h, indicating that positioning of the microtubule organizing center was not the reason for, but rather the result of, the biased lamellipodium response. Colcemid-treated ECs responded normally to flow, indicating that microtubules were not involved in both flow sensing and the flow-induced, biased lamellipodium development.
为了分析研究血管内皮细胞(ECs)对流体流动的形态学反应,我们设计了一种平行板流动培养室,在其中将细胞置于0.01至2.0 Pa的流体剪切应力下培养数天。通过培养室的观察窗,通过直接观察或视频增强延时显微镜监测ECs对已知水平流体剪切应力的反应。在培养的ECs对流动的反应中,形态学反应需要数小时至数天才能完全表达,除了我们之前报道的流体剪切应力依赖性运动模式变化可在流动变化后30分钟内检测到。我们在此报告,暴露于超过1.0 Pa流体剪切应力的ECs在10分钟内会在流动方向上形成片状伪足。这是ECs对流体剪切应力最快的可在结构上识别的反应。这是一种可逆反应。当流动停止或降低到施加小于0.1 Pa流体剪切应力的水平时,有偏向的片状伪足发育在几分钟内就会消失。在流动影响下,微管组织中心位于ECs细胞核的后方。然而,这种位置仅在对流体剪切应力反应超过1小时的ECs中才确立,这表明微管组织中心的定位不是有偏向的片状伪足反应的原因,而是其结果。用秋水仙酰胺处理的ECs对流动的反应正常,表明微管不参与流动感知和流动诱导的有偏向的片状伪足发育。