Method Article

In Vivo Methods to Assess Retinal Ganglion Cell and Optic Nerve Function and Structure in Large Animals

DOI:

10.3791/62879

February 26th, 2022

In This Article

Summary

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Here we demostrate several in vivo tests (flash visual evoked potential, pattern electroretinogram and optic coherence tomography) in goat and rhesus macaque to understand the structure and function of the optic nerve and its neurons.

Abstract

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The optic nerve collects axons signals from the retinal ganglion cells and transmits visual signal to the brain. Large animal models of optic nerve injury are essential for translating novel therapeutic strategies from rodent models to clinical application due to their closer similarities to humans in size and anatomy. Here we describe some in vivo methods to evaluate the function and structure of the retinal ganglion cells (RGCs) and optic nerve (ON) in large animals, including visual evoked potential (VEP), pattern electroretinogram (PERG) and optical coherence tomography (OCT). Both goat and non-human primate were employed in this study. By presenting these in vivo methods step by step, we hope to increase experimental reproducibility among different labs and facilitate the usage of large animal models of optic neuropathies.

Introduction

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The optic nerve (ON), which consists of axons from the retinal ganglion cells (RGC), transmits visual signal from the retina to the brain. ON diseases, such as glaucoma, traumatic or ischemic optic neuropathy, often caused irreversible ON/RGC degeneration and devastating visual loss. Although there are currently many breakthroughs in ON regeneration and RGC protection in rodent models1,2,3,4,5,6, clinical treatments for most of the ON diseases remaine....

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Protocol

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Experiments were conducted strictly in accordance with the ARRIVE guidelines and the National Institutes of Health guide for the care and use of Laboratory animals, and adhere to the protocols approved by the Institutional Animal Care and Use Committee in Wenzhou Medical University (WMU) and Joinn Laboratory (Suzhou). The male Saanen goats, aged from 4 to 6 months with weight of 19-23 kg, were housed in the WMU animal facility. The male Rhesus macaques, aged from 5 to 6 years with weight of 5-7 kg, were housed in the Joinn animal facility. All the animals were maintained in an air-conditioned room with controlled temperature (21 ± 2 °C) under a 12 h light/12....

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Results

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Figure 1A shows representative results of FVEP in goat. Although the waveforms in same flash intensity have relative similarity, we still recommend to examine the waveforms twice. Electromagnetic waves generated by electronic devices will interfere with the collected electrical signals, resulting in high baseline noise and poor repeatability of the waveform. Therefore, it is recommended to ensure that there are no redundant electronic devices plugged into the surrounding environment during e.......

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Discussion

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In this study, we present a protocol of VEP, PERG, and OCT in goat and rhesus macaque. These in vivo methods can be applied in large animal models of various optic neuropathies, such as glaucoma, ischemic, or traumatic optic neuropathy and optic neuritis9.

PVEP is more stable and sensitive than FVEP17; however, it can't be elicited in goat9. As such, FVEP is performed in goat and PVEP is performed in rhesus macaqu.......

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Disclosures

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The authors do not have any conflicts of interest to disclose.

Acknowledgements

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This study was funded by the following grants: National Key R&D Program of China (2021YFA1101200); Medical Research Project of Wenzhou (Y20170188), National Key R&D Program of China (2016YFC1101200); National Natural Science Foundation of China (81770926;81800842); Key R&D Program of Zhejiang Province (2018C03G2090634); and Key R&D Program of Wenzhou Eye Hospital (YNZD1201902). The sponsor or funding organization had no role in the design or conduct of this research.

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Materials

List of materials used in this article
NameCompanyCatalog NumberComments
47.6 x 26.8 cm monitorsDELL Inc.E2216HVThe visual stimuli of contrast-reversal black-white checkerboards were displayed on screens
6.0 mm tracheal tubeHenan Tuoren Medical Device Co., LtdPVC 6.0ensure the airway
alligator clip
atropineGuangdong Jieyang Longyang Animal pharmaceutical Co.,Ltd.reduce bronchial secretion and protect heart from vagal nerve activation
Carbomer Eye GelFabrik GmbH Subsidiary of Bausch & Lombmoisten the cornea and stabilize the recording electrodes
ERG-Jet recording electrodesRoland Consult Stasche&Finger GmbH2300 La Chaux-De-FondsERG recording
eye speculumShanghai Jinzhong Medical Device Co., LtdZYD020open palpebral fissure
Heidelberg Spectralis OCT systemHeidelberg EngineeringOCT system
Imaging(https://www.heidelbergengineering.com/media/e-learning/Totara-US/files/pdf-tutorials/2238-003_Spectralis-Training-Guide.pdf)
isofluraneRWD Life Science Co., LtdR510-22isoflurane anesthesia
male Saanen goatsCaimu Livestock Company, country (Hangzhou, China)The male Saanen goats, aged from 4 to 6 months with weight of 19–23 kg
needle electrodeRoland Consult Stasche&Finger GmbHU51-426-G-Duse for FVEP ground electrode and PERG reference electrodes
periphery venous catheter intravenouslyBD shanghai Medical Device Co., Ltd383019intravenous access for atropine and propofol
propofolXian Lipont Enterprise Union Management Co.,Ltd.induce Isoflurane anesthesia in goat
Tropicamide Phenylephrine Eye DropsSANTEN OY, Japan5% tropicamide and 5% phenylephrine hydrochloride
visual electrophysiology deviceGotec Co., LtdGT-2008V-IIIuse for FVEP & PERG
xylazineHuamu Animal Health Products Co., Ltd.xylazine anesthesia: intramuscular injection of xylazine 3mg/kg
zoletil50Virbacinduce Isoflurane anesthesia in monkey

References

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  1. Benowitz, L., Yin, Y. Rewiring the injured CNS: lessons from the optic nerve. Experimental Neurology. 209 (2), 389-398 (2008).
  2. Park, K. K., et al. Promoting axon regeneration in the adult CNS by modulation of the PTEN/mTOR pathway. Science. ....

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Tags

Retinal Ganglion CellsOptic Nerve FunctionVisual Evoked PotentialPattern ElectroretinogramOptical Coherence TomographyLarge Animal ModelsOptic Nerve InjuryRhesus MacaqueGoat ModelOptic Neuropathy

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