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Invest Ophthalmol Vis SciJune 20227 citations

Inhibition of Heat Shock Protein B8 Alleviates Retinal Dysfunction and Ganglion Cells Loss Via Autophagy Suppression in Mouse Axonal Damage.

Xie Feijia, Li Zongyuan, Yang Ning, Yang Jiayi, Hua Dihao, Luo Jinyuan, He Tao, Xing Yiqiao


AI Summary

Inhibiting HspB8 in mouse optic nerve injury protected retinal ganglion cells and function by suppressing autophagy, suggesting a potential therapeutic target for glaucoma.

Abstract

Purpose

Heat shock protein B8 (HspB8) can be upregulated rapidly in many pathologic processes, but its role in traumatic optic neuropathy remains unclear. In this study, we investigated the involvement of autophagy in the effects of HspB8 by using the optic nerve crush (ONC) model.

Methods

Male C57BL/6J mice were intravitreally injected with recombinant adeno-associated virus type 2 (AAV2-shHspB8 or AAV2-GFP) and subsequently received ONC by a self-closing tweezers. Western blot and immunohistochemistry staining were used to evaluate the expression of HspB8. We conducted retinal flat-mount immunofluorescence to measure the quantities of retinal ganglion cells (RGCs), and full-field flash electroretinogram (ff-ERG) and optomotor response (OMR) were used to evaluate retinal function. The autophagy level was reflected by western blot, immunohistochemistry staining, and transmission electron microscope (TEM) images. We also applied 3-methyladenine (3MA) and rapamycin (Rapa) to regulate autophagy level in optic nerve injury.

Results

ONC stimulated the expression of HspB8. Declines of RGCs and ff-ERG b-wave amplitudes resulting from ONC can be alleviated by HspB8 downregulation. Increased autophagy activity after ONC was observed; however, this change can be reversed by intravitreal injection of AAV2-shHspB8. Furthermore, application of autophagy inhibitor 3MA had the same neuroprotective effects as AAV2-shHspB8, as illustrated by ff-ERG and quantities of RGCs. Also, protection of AAV2-shHspB8 was compromised by the autophagy activator Rapa.

Conclusions

Inhibition of HspB8 in mice optic nerve injury had neuroprotective effects, which may be derived from its downregulation of autophagy.


MeSH Terms

AnimalsAutophagyAxonsDisease Models, AnimalHeat-Shock ProteinsMaleMiceMice, Inbred C57BLNerve CrushNeuroprotective AgentsOptic Nerve Injuries

Key Concepts6

Optic nerve crush (ONC) stimulated the expression of Heat Shock Protein B8 (HspB8) in male C57BL/6J mice.

MechanismBasic ScienceExperimental Animal Studyn=Male C57BL/6J miceCh2Ch26

Downregulation of Heat Shock Protein B8 (HspB8) by intravitreal injection of AAV2-shHspB8 alleviated declines in retinal ganglion cells (RGCs) and full-field flash electroretinogram (ff-ERG) b-wave amplitudes in male C57BL/6J mice after optic nerve crush (ONC).

TreatmentBasic ScienceExperimental Animal Studyn=Male C57BL/6J miceCh5Ch26

Increased autophagy activity was observed in male C57BL/6J mice after optic nerve crush (ONC), and this change was reversed by intravitreal injection of AAV2-shHspB8.

MechanismBasic ScienceExperimental Animal Studyn=Male C57BL/6J miceCh2Ch26

Application of the autophagy inhibitor 3-methyladenine (3MA) had neuroprotective effects, similar to AAV2-shHspB8, as illustrated by full-field flash electroretinogram (ff-ERG) and quantities of retinal ganglion cells (RGCs) in male C57BL/6J mice with optic nerve injury.

TreatmentBasic ScienceExperimental Animal Studyn=Male C57BL/6J miceCh5Ch26Ch35

The neuroprotective effects of AAV2-shHspB8 were compromised by the autophagy activator rapamycin (Rapa) in male C57BL/6J mice with optic nerve injury.

MechanismBasic ScienceExperimental Animal Studyn=Male C57BL/6J miceCh2Ch26

Inhibition of Heat Shock Protein B8 (HspB8) in mice with optic nerve injury had neuroprotective effects, which may be derived from its downregulation of autophagy.

MechanismBasic ScienceExperimental Animal Studyn=Mice with optic nerve injuryCh2Ch26Ch35

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