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首页> 外文期刊>Journal of Immunological Methods >Digital video-imaging of leukocyte migration in the iris: intravital microscopy in a physiological model during the onset of endotoxin-induced uveitis.
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Digital video-imaging of leukocyte migration in the iris: intravital microscopy in a physiological model during the onset of endotoxin-induced uveitis.

机译:虹膜中白细胞迁移的数字视频成像:内毒素诱导的葡萄膜炎发作期间的生理模型中的活体显微镜检查。

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The process of inflammation is accompanied by an alteration of leukocyte-endothelial dynamics. Reciprocal changes in the endothelium and the white cell permit the leukocyte to relinquish its normal free-flowing state in order to roll, arrest, and emigrate through the endothelium. Although intravital microscopy is an established method to observe this process, the eye has been under-utilized for this purpose. Iris vasculature can be videophotographed without the artifact of trauma. We used rhodamine 6G in vivo staining of leukocytes from BALB/c mice in a model of inflammation induced by intravitreally injected endotoxin. Digital video technology was used to record observations at baseline, 2 h, and 4 h after the endotoxin injection. Off-line analysis of microhemodynamic parameters established that the percentage of venules exhibiting rolling increased significantly from 4% at baseline to 34% at 2 h and 82% at 4 h after endotoxin injection. We found a marked increase in leukocyte arrest within 4 h (601+/-119 cells per mm(2) vs. 2+/-1 cells per mm(2) in control animals). Although shear stress differs minimally between iris arterioles and venules, both rolling and arrest occurred preferentially in venules indicating that shear stress is not the dominant factor for determining cell adhesion. Compared to previous reports on intravital microscopy, our methodology includes refinements or advantages in visualizing cells that have transmigrated as well as the avoidance of surgical trauma. The resolution and quantifiable nature of this technique are such that the methodology can be applied to repetitive observation of leukocyte-endothelial dynamics during an immune response.
机译:炎症过程伴有白细胞内皮动力学的改变。内皮和白细胞的相互变化允许白细胞放弃其正常的自由流动状态,以滚动,阻滞和迁移通过内皮。尽管活体显微镜检查是观察该过程的既定方法,但为此目的尚未充分利用眼睛。虹膜血管可以被摄影而没有外伤的产物。我们在玻璃体内注射内毒素诱导的炎症模型中,使用了罗丹明6G的BALB / c小鼠白细胞体内染色。内毒素注射后2小时和4小时,使用数字视频技术记录了观察结果。微量血流动力学参数的离线分析表明,内毒素注射后,表现出侧倾的小静脉百分比从基线的4%显着增加到2小时的34%和4小时的82%。我们发现在4小时内白细胞停滞明显增加(对照组动物中,每mm(2)601 +/- 119个细胞,而每mm(2)2 +/- 1个细胞)。尽管虹膜小动脉和小静脉之间的切应力差异极小,但滚动和停滞均优先发生在小静脉中,这表明切应力不是决定细胞粘附的主要因素。与以前有关活体显微镜的报道相比,我们的方法在可视化已迁移细胞以及避免手术创伤方面包括改进或优势。该技术的分辨率和可量化的性质使得该方法可用于免疫应答期间白细胞-内皮动力学的重复观察。

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