首页> 外文期刊>American Journal of Physiology >Arterial shear stress regulates endothelial cell-directed migration, polarity, and morphology in confluent monolayers.
【24h】

Arterial shear stress regulates endothelial cell-directed migration, polarity, and morphology in confluent monolayers.

机译:动脉剪切应力调节融合单层中内皮细胞定向迁移、极性和形态。

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Hemodynamic regulation of directional endothelial cell (EC) migration implies an essential role of shear stress in governing EC polarity. Shear stress induces reorientation of the microtubule organizing center toward the leading edge of migrating cells in a Cdc42-dependent manner. We have characterized the global patterns of EC migration in confluent monolayers as a function of shear stress direction and exogenous pleiotropic factors. Results demonstrate the presence of mitogenic factors significantly affects the flow-induced dynamics of movement by prolonging the onset of monolayer quiescence up to 4 days, but not shear stress-induced morphology. In conjunction with increased motility, exogenous growth factors contributed to the directed migration of ECs in the flow direction. ECs exposed to arterial flow in serum/growth factor-free media and then supplemented with growth factors rapidly increased directional migration to 85 of cells migrating in the direction of flow and induced an increase in the distance traveled with the flow direction. This response was modulated by the directionality of flow and inhibited by the expression of dominant-negative Par6, a major downstream effector of Cdc42-induced polarity. Shear stress-induced directed migratory polarity is modulated by exogenous growth factors and dependent on Par6 activity and shear stress direction.
机译:定向内皮细胞 (EC) 迁移的血流动力学调节意味着剪切应力在控制 EC 极性方面起着重要作用。剪切应力以 Cdc42 依赖性方式诱导微管组织中心向迁移细胞前缘的重新定向。我们已经将汇合单层中EC迁移的全局模式表征为剪切应力方向和外源多效性因子的函数。结果表明,有丝分裂因子的存在通过将单层静止的开始时间延长至4天而显着影响流动诱导的运动动力学,但剪切应力诱导的形态学却没有。随着运动能力的增加,外源生长因子促进了ECs在流动方向上的定向迁移。在无血清/生长因子培养基中暴露于动脉血流的 EC 然后补充生长因子迅速增加定向迁移,达到 85% 的细胞沿流动方向迁移,并诱导沿流动方向移动的距离增加。这种反应受流动方向性的调节,并受到显性阴性 Par6 的表达的抑制,Par6 是 Cdc42 诱导的极性的主要下游效应子。剪切应力诱导的定向迁移极性受外源生长因子的调节,并取决于Par6活性和剪切应力方向。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号