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视杆光感受器中瞬时视网膜光向性的生物物理机制。

Biophysical mechanism of transient retinal phototropism in rod photoreceptors.

作者信息

Zhao Xiaohui, Thapa Damber, Wang Benquan, Gai Shaoyan, Yao Xincheng

机构信息

College of Physics Science and Technology, Hebei University, Baoding, China 071002; Department of Bioengineering, University of Illinois at Chicago, Chicago, IL USA 60607.

Department of Bioengineering, University of Illinois at Chicago, Chicago, IL USA 60607.

出版信息

Proc SPIE Int Soc Opt Eng. 2016 Feb 13;9706. doi: 10.1117/12.2209144. Epub 2016 Mar 7.

Abstract

Oblique light stimulation evoked transient retinal phototropism (TRP) has been recently detected in frog and mouse retinas. High resolution microscopy of freshly isolated retinas indicated that the TRP is predominated by rod photoreceptors. Comparative confocal microscopy and optical coherence tomography (OCT) revealed that the TRP predominantly occurred from the photoreceptor outer segment (OS). However, biophysical mechanism of rod OS change is still unknown. In this study, frog retinal slices, which open a cross section of retinal photoreceptor and other functional layers, were used to test the effect of light stimulation on rod OS. Near infrared light microscopy was employed to monitor photoreceptor changes in retinal slices stimulated by a rectangular-shaped visible light flash. Rapid rod OS length change was observed after the stimulation delivery. The magnitude and direction of the rod OS change varied with the position of the rods within the stimulated area. In the center of stimulated region the length of the rod OS shrunk, while in the peripheral region the rod OS tip swung towards center region in the plane perpendicular to the incident stimulus light. Our experimental result and theoretical analysis suggest that the observed TRP may reflect unbalanced disc-shape change due to localized pigment bleaching. Further investigation is required to understand biochemical mechanism of the observed rod OS kinetics. Better study of the TRP may provide a noninvasive biomarker to enable early detection of age-related macular degeneration (AMD) and other diseases that are known to produce retinal photoreceptor dysfunctions.

摘要

最近在青蛙和小鼠视网膜中检测到斜向光刺激诱发的瞬态视网膜光向性(TRP)。对新鲜分离视网膜的高分辨率显微镜观察表明,TRP主要由视杆光感受器主导。比较共聚焦显微镜和光学相干断层扫描(OCT)显示,TRP主要发生在光感受器外段(OS)。然而,视杆OS变化的生物物理机制仍然未知。在本研究中,使用青蛙视网膜切片(其打开了视网膜光感受器和其他功能层的横截面)来测试光刺激对视杆OS的影响。采用近红外光显微镜监测由矩形可见光闪光刺激的视网膜切片中的光感受器变化。在刺激传递后观察到视杆OS长度的快速变化。视杆OS变化的幅度和方向随视杆在受刺激区域内的位置而变化。在受刺激区域的中心,视杆OS的长度缩短,而在周边区域,视杆OS尖端在垂直于入射刺激光的平面内朝着中心区域摆动。我们的实验结果和理论分析表明,观察到的TRP可能反映了由于局部色素漂白导致的盘状变化不平衡。需要进一步研究以了解观察到的视杆OS动力学的生化机制。对TRP的更好研究可能提供一种非侵入性生物标志物,以便能够早期检测年龄相关性黄斑变性(AMD)和其他已知会导致视网膜光感受器功能障碍的疾病。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6c8/5289741/b20e7389db66/nihms843929f1.jpg

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