Fillacier K, Peyman G A, Luo Q, Khoobehi B
LSU Eye Center, Louisiana State University Medical Center School of Medicine, New Orleans 70112-2234, USA.
Curr Eye Res. 1995 Jul;14(7):579-84. doi: 10.3109/02713689508998405.
The purpose of this experiment was to study in vivo the dynamic behavior of the lymphocyte in the retinal circulation. We developed a new technique capable of visualization of lymphocyte motion in the retinal and choroidal vessels using a rat model. Live cells freshly removed on a donor animal were labeled by a simple method using fluorescein isothiocyanate. Labeled cells were injected systemically into another animal. Retinal images were reconstituted on a video screen with a scanning laser ophthalmoscope (SLO) utilizing the argon green laser excitation wavelength (514.5 nm) to detect cell fluorescence. Lymphocytes were clearly seen and followed in the retinal vessels. Some slowed down in the capillary system, or even stopped for a few seconds, or were definitively caught in it. Labeled cells remained visible after circulating several times. A method was developed for in vivo visualization of lymphocytes in the retinal circulation. This method has the potential for application in the study of lymphocyte cell behavior under physiological as well as pathological conditions.
本实验的目的是在体内研究淋巴细胞在视网膜循环中的动态行为。我们开发了一种新技术,能够使用大鼠模型可视化视网膜和脉络膜血管中的淋巴细胞运动。通过使用异硫氰酸荧光素的简单方法对从供体动物新鲜取出的活细胞进行标记。将标记的细胞全身注射到另一只动物体内。利用氩绿激光激发波长(514.5 nm),通过扫描激光检眼镜(SLO)在视频屏幕上重建视网膜图像,以检测细胞荧光。在视网膜血管中可以清楚地看到并追踪淋巴细胞。一些淋巴细胞在毛细血管系统中减速,甚至停止几秒钟,或者最终被困在其中。标记的细胞在循环几次后仍可见。开发了一种用于体内可视化视网膜循环中淋巴细胞的方法。该方法有潜力应用于生理和病理条件下淋巴细胞行为的研究。