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Reduction of Neuroinflammation by δ-Opioids Via STAT3-Dependent Pathway in Chronic Glaucoma Model
Shahid Husain1, Syed A H Zaidi1, Sudha Singh1
1Department of Ophthalmology, Storm Eye Institute, Medical University of South Carolina, Charleston, SC, United States.
Abstract:
The main objective of this study was to determine the inhibition of pro-inflammatory cytokines and their associated signaling molecules by δ-opioid receptor activation by a selective ligand, SNC-121 in chronic rat glaucoma model. Intraocular pressure was raised in rat eyes by injecting 2 M hypertonic saline into the limbal veins. SNC-121 (1 mg/kg; i. p) or Stattic (5 mg/kg; i. p) was administered in Brown Norway rats daily for 7 days. The mRNA expression of IL-1β, TNF-α, Fas, IL-6, leukemia inhibitory factor, and IFN-γ was increased significantly in the retina of ocular hypertensive animals at day 7, post injury. Administration of SNC-121 (1 mg/kg; i. p. injection) for 7 days (once a day) completely inhibited the increase in the mRNA and protein expression of pro-inflammatory cytokines. Mechanistically, we provide data showing a significant increase in the phosphorylation of STAT3 at tyrosine 705 whereas a moderate but significant increase in the total STAT3 protein expression was also seen in the retina of ocular hypertensive animals. Data illustrated that SNC-121 administration completely abrogated ocular hypertension-induced increase in STAT3Y705 phosphorylation. Interestingly, acetylation of STAT3 at lysine 685 (AcK685) was reduced in ocular hypertensive animals and subsequently increased significantly by SNC-121 treatment. Stattic, a selective STAT3 inhibitor, administration resulted in a complete attenuation in the production of IL-1β and IL-6 in ocular hypertensive animals. In conclusion, δ-opioid receptor activation suppressed the phosphorylation of STAT3 at tyrosine 705 and increased acetylation at lysine 686 and these posttranslational modifications can regulate the production of some but not all pro-inflammatory cytokines in response to glaucomatous injury.
Insights
Activation of the delta-opioid receptor by SNC-121 inhibits pro-inflammatory cytokines in a rat glaucoma model. This treatment reduced STAT3 phosphorylation and modulated STAT3 acetylation, offering a potential therapeutic strategy.
Area of Science:
- Ophthalmology
- Neuroscience
- Immunology
Background:
- Glaucoma is characterized by elevated intraocular pressure and optic nerve damage.
- Pro-inflammatory cytokines and STAT3 signaling are implicated in glaucomatous injury.
- Targeting inflammatory pathways offers a potential therapeutic approach for glaucoma.
Purpose of the Study:
- To investigate the inhibitory effects of delta-opioid receptor activation by SNC-121 on pro-inflammatory cytokines in a rat model of chronic glaucoma.
- To elucidate the role of STAT3 signaling and its post-translational modifications in mediating these effects.
Main Methods:
- A chronic rat glaucoma model was established by inducing ocular hypertension.
- Rats were treated daily for 7 days with SNC-121 (a selective delta-opioid receptor agonist) or Stattic (a STAT3 inhibitor).
- Retinal mRNA and protein expression of key pro-inflammatory cytokines (IL-1β, TNF-α, IL-6, etc.) and STAT3 signaling markers were analyzed.
Main Results:
- Ocular hypertension significantly increased retinal expression of pro-inflammatory cytokines and STAT3 phosphorylation at tyrosine 705.
- SNC-121 treatment completely inhibited the increase in pro-inflammatory cytokine expression and STAT3 phosphorylation.
- SNC-121 also increased STAT3 acetylation at lysine 685, which was reduced in ocular hypertensive rats.
- Stattic treatment attenuated IL-1β and IL-6 production.
Conclusions:
- Delta-opioid receptor activation effectively suppresses pro-inflammatory cytokine production in a rat glaucoma model.
- The mechanism involves the inhibition of STAT3 phosphorylation and modulation of STAT3 acetylation.
- These findings highlight the therapeutic potential of targeting delta-opioid receptors and STAT3 signaling in glaucoma management.
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