Huang Shun-Ping, Lin Po-Kang, Liu Jorn-Hon, Khor Chin-Ni, Lee Yih-Jing
Department of Ophthalmology, Taipei Veterans General Hospital, Taipei, Taiwan, ROC.
J Biomed Sci. 2004 Jan-Feb;11(1):37-48. doi: 10.1007/BF02256547.
Ciliary neurotrophic factor (CNTF) is known as an important factor in the regulation of retinal cell growth. We used both recombinant CNTF and an adenovirus carrying the CNTF gene to regulate retinal photoreceptor expression in a retinal degenerative animal, Royal College of Surgeons (RCS) rats. Cells in the outer nuclear layer of the retinae from recombinant-CNTF-treated, adenoviral-CNTF-treated, saline-operated, and contralateral untreated preparations were examined for those exhibiting CNTF photoreceptor protective effects. Cell apoptosis in the outer nuclear layer of the retinae was also detected. It was found that CNTF had a potent effect on delaying the photoreceptor degeneration process in RCS rats. Furthermore, adenovirus CNTF gene transfer was proven to be better at rescuing photoreceptors than that when using recombinant CNTF, since adenoviral CNTF prolonged the photoreceptor protection effect. The function of the photoreceptors was also examined by taking electroretinograms of different animals. Adenoviral-CNTF-treated eyes showed better retinal function than did the contralateral control eyes. This study indicates that adenoviral CNTF effectively rescues degenerating photoreceptors in RCS rats.
睫状神经营养因子(CNTF)是视网膜细胞生长调节中的重要因子。我们使用重组CNTF和携带CNTF基因的腺病毒来调节视网膜变性动物——皇家外科学院(RCS)大鼠的视网膜光感受器表达。对来自重组CNTF处理组、腺病毒CNTF处理组、生理盐水处理组和对侧未处理组的视网膜外核层细胞进行检查,以确定哪些细胞表现出CNTF对光感受器的保护作用。还检测了视网膜外核层的细胞凋亡情况。结果发现,CNTF对延缓RCS大鼠的光感受器变性过程有显著作用。此外,腺病毒CNTF基因转移在挽救光感受器方面被证明比使用重组CNTF时效果更好,因为腺病毒CNTF延长了光感受器保护作用。还通过对不同动物进行视网膜电图检查来检测光感受器的功能。腺病毒CNTF处理的眼睛比其对侧对照眼显示出更好的视网膜功能。本研究表明,腺病毒CNTF能有效挽救RCS大鼠中退化的光感受器。