Ahn So Min, Ahn Jungryul, Cha Seongkwang, Yun Cheolmin, Park Tae Kwann, Goo Yong Sook, Kim Seong-Woo
Department of Ophthalmology, Korea University College of Medicine, Seoul 08373, Korea.
Department of Physiology, Chungbuk National University School of Medicine, Cheongju 28644, Korea.
Exp Neurobiol. 2019 Feb;28(1):62-73. doi: 10.5607/en.2019.28.1.62. Epub 2019 Feb 19.
Since genetic models for retinal degeneration (RD) in animals larger than rodents have not been firmly established to date, we sought in the present study to develop a new rabbit model of drug-induced RD. First, intravitreal injection of N-methyl-N-nitrosourea (MNU) without vitrectomy in rabbits was performed with different doses. One month after injection, morphological changes in the retinas were identified with ultra-wide-field color fundus photography (FP) and fundus autofluorescence (AF) imaging as well as spectral-domain optical coherence tomography (OCT). Notably, the degree of RD was not consistently correlated with MNU dose. Then, to check the effects of vitrectomy on MNU-induced RD, the intravitreal injection of MNU after vitrectomy in rabbits was also performed with different doses. In OCT, while there were no significant changes in the retinas for injections up to 0.1 mg (i.e., sham, 0.05 mg, and 0.1 mg), outer retinal atrophy and retinal atrophy of the whole layer were observed with MNU injections of 0.3 mg and 0.5 mg, respectively. With this outcome, 0.2 mg MNU was chosen to be injected into rabbit eyes (n=10) at two weeks after vitrectomy for further study. Six weeks after injection, morphological identification with FP, AF, OCT, and histology clearly showed localized outer RD - clearly bordered non-degenerated and degenerated outer retinal area - in all rabbits. We suggest our post-vitrectomy MNU-induced RD rabbit model could be used as an interim animal model for visual prosthetics before the transition to larger animal models.
由于迄今为止,尚未在比啮齿动物更大的动物中牢固建立视网膜变性(RD)的遗传模型,因此我们在本研究中试图开发一种新的药物诱导性RD兔模型。首先,在未进行玻璃体切割术的情况下,以不同剂量对兔进行玻璃体内注射N-甲基-N-亚硝基脲(MNU)。注射后一个月,通过超广角彩色眼底照相(FP)、眼底自发荧光(AF)成像以及光谱域光学相干断层扫描(OCT)来识别视网膜的形态变化。值得注意的是,RD的程度与MNU剂量并非始终相关。然后,为了检查玻璃体切割术对MNU诱导的RD的影响,还对兔在玻璃体切割术后以不同剂量进行了玻璃体内注射MNU。在OCT检查中,当注射剂量高达0.1mg(即假手术、0.05mg和0.1mg)时,视网膜没有明显变化,而分别注射0.3mg和0.5mg MNU时,观察到外层视网膜萎缩和全层视网膜萎缩。基于这一结果,选择在玻璃体切割术后两周向兔眼(n = 10)注射0.2mg MNU进行进一步研究。注射后六周,通过FP、AF、OCT和组织学进行的形态学鉴定清楚地显示,所有兔子均出现局限性外层RD,即外层视网膜区域有明显边界的非变性和变性区域。我们认为,我们的玻璃体切割术后MNU诱导的RD兔模型可作为向更大动物模型过渡之前视觉假体的中间动物模型。