Department of Veterinary Medicine, Alma Mater Studiorum-University of Bologna, Ozzano dell'Emilia, BO, Italy.
Department of Biology, University of Pisa, Pisa, PI, Italy.
Sci Rep. 2022 Sep 14;12(1):15479. doi: 10.1038/s41598-022-19925-8.
Pigs are becoming an important pre-clinical animal species for translational ophthalmology, due to similarities with humans in anatomical and physiological patterns. Different models of eye disorders have been proposed, and they are good candidates to assess biocompatibility/functionality of retinal prostheses. Electroretinography is a common tool allowing to gain information on retinal function, with several types of electroretinogram (ERG) been implemented including full field (ff-ERG), multifocal (mf-ERG) and pattern (p-ERG). p-ERG represents a valuable tool to monitor Retinal Ganglion Cells (RGCs) activity and can be used to calculate p-ERG spatial acuity. Unfortunately, scarce methodological data are available regarding recording/interpretation of p-ERG and retinal acuity in biomedical pigs yet enhancing knowledge regarding pig vision physiology will allow for more refined and responsible use of such species. Aim of this study was to record p-ERG in juvenile pigs to functionally assess visual acuity. Six female hybrid pigs underwent two p-ERG recording sessions at 16 and 19 weeks of age. Photopic ff-ERG were also recorded; optical coherence tomography (OCT) and histology were used to confirm retinal integrity. ff-ERG signals were repeatable within/across sessions. All p-ERG traces consistently displayed characterizing peaks, and the progressive decrease of amplitude in response to the increment of spatial frequency revealed the reliability of the method. Mean p-ERG spatial acuities were 5.7 ± 0.14 (16 weeks) and 6.2 ± 0.15 cpd (19 weeks). Overall, the p-ERG recordings described in the present work seem reliable and repeatable, and may represent an important tool when it comes to vision assessment in pigs.
猪在眼科学的转化研究中成为一种重要的临床前动物模型,因为它们在解剖学和生理学模式上与人类相似。已经提出了不同的眼部疾病模型,它们是评估视网膜假体生物相容性/功能的良好候选者。视网膜电图是一种常用的工具,可以获取视网膜功能信息,已经实现了几种类型的视网膜电图(ERG),包括全视野(ff-ERG)、多焦点(mf-ERG)和模式(p-ERG)。p-ERG 是监测视网膜神经节细胞(RGC)活动的一种有价值的工具,可用于计算 p-ERG 空间分辨率。不幸的是,关于生物医学猪的 p-ERG 记录/解释和视网膜分辨率的方法学数据很少,但是增加对猪视觉生理学的了解将允许更精细和负责任地使用这些物种。本研究的目的是记录幼年猪的 p-ERG,以功能评估视力。六只雌性杂交猪在 16 周和 19 周龄时进行了两次 p-ERG 记录。还记录了明视 ff-ERG;光学相干断层扫描(OCT)和组织学用于确认视网膜完整性。ff-ERG 信号在各次试验内/间均具有可重复性。所有 p-ERG 轨迹都一致显示出特征性峰值,并且随着空间频率的增加而振幅逐渐降低,这表明该方法具有可靠性。平均 p-ERG 空间分辨率分别为 5.7±0.14(16 周)和 6.2±0.15 cpd(19 周)。总体而言,本工作中描述的 p-ERG 记录似乎是可靠且可重复的,当涉及到猪的视力评估时,可能是一种重要的工具。