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氧分压调节暴露于流体静压下的内皮细胞中Ca2+对流动刺激的反应。

Oxygen tension modulates Ca2+ response to flow stimulus in endothelial cells exposed to hydrostatic pressure.

作者信息

Ohashi Toshiro, Sakamoto Naoya, Iwao Akiyo, Sato Masaaki

机构信息

Graduate School of Mechanical Engineering, Tohoku University, Aramaki-Aoba 01, Sendai 980-8579, Japan.

出版信息

Technol Health Care. 2003;11(4):263-74.

Abstract

The effects of oxygen gas tensions and hydrostatic pressure on intracellular calcium, [Ca2+]i, response to a flow stimulus in endothelial cells were investigated. Cultured bovine aortic endothelial cells (BAECs) were exposed to a hydrostatic pressure of 100 mmHg under low oxygen gas tensions and were subsequently subjected to a 1 minute mechanical stimulation of fluid shear stress of 20 dynes/cm2. The [Ca2+]i response in BAECs was measured using a fluorescent indicator, Calcium Green-1. The maximum intensity for low oxygen tension was significantly lower than that for normal oxygen tension, which provides evidence that low oxygen tension regulates cellular functions downward. Moreover, preloading of hydrostatic pressure also reduced the increases in [Ca2+]i. These results suggest that BAECs in venous system, where oxygen tension and hydrostatic pressure are lower than those in arterial system, may be less sensitive to fluid flow. A separate observation showed that low oxygen tension did not significantly affect the cell morphology. In contrast, BAECs exposed to hydrostatic pressure showed marked elongation with no predominant orientation and the F-actin filament distributions were rearranged, indicating centrally located thick stress fibers. For better understanding of endothelial cell physiology, it is very important to elucidate the effect of oxygen gas tensions together with mechanical environment on endothelial cell responses.

摘要

研究了氧气张力和静水压力对内皮细胞内钙离子([Ca2+]i)对流动刺激反应的影响。将培养的牛主动脉内皮细胞(BAECs)置于低氧气张力下,施加100 mmHg的静水压力,随后对其施加1分钟20达因/平方厘米的流体剪切应力机械刺激。使用荧光指示剂钙黄绿素-1测量BAECs中的[Ca2+]i反应。低氧张力下的最大强度显著低于正常氧张力下的最大强度,这证明低氧张力会下调细胞功能。此外,预加载静水压力也会减少[Ca2+]i的增加。这些结果表明,在氧气张力和静水压力低于动脉系统的静脉系统中的BAECs可能对流体流动不太敏感。另一项观察表明,低氧张力对细胞形态没有显著影响。相比之下,暴露于静水压力下的BAECs显示出明显的伸长,没有明显的取向,并且F-肌动蛋白丝分布重新排列,表明有位于中央的粗大应力纤维。为了更好地理解内皮细胞生理学,阐明氧气张力以及机械环境对内皮细胞反应的影响非常重要。

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