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Krishnamoorthy, R. R.

Publications and source records attributed to Krishnamoorthy, R. R..

3 recordsLinked to original sources

Involvement of c-Jun N-terminus kinase 2 (JNK2) in Endothelin-1 (ET-1) mediated neurodegeneration of retinal ganglion cells

PurposeThe goal of this study was to determine if JNK2 plays a causative role in endothelin-mediated loss of RGCs in mice. MethodsJNK2-/- and wild type (C57BL/6) mice were intravitreally injected in one eye with 1 nmole of ET-1, while the contralateral eye was injected with the vehicle. At two time points (2 h and 24 h) following the intravitreal injections, retinal sections were obtained and phosphorylated c-Jun was assessed. In a separate set of experiments, JNK2-/- and wild type mice were intravitreally injected with either 1 nmole of ET-1 or its vehicle, and euthanized 7 days post-injection. Retinal flat mounts were stained with antibodies to the RGC marker, Brn3a, and surviving RGCs were quantified. Axonal degeneration was assessed by imaging PPD stained optic nerve sections. ResultsIntravitreal ET-1 administration produced a significant increase in immunostaining for phospho c-Jun in wild type mice, which was appreciably lower in the JNK2 -/- mice. A significant (p<0.05) 26% loss of RGCs was found in wild type mice, 7 days post injection with ET-1. JNK2-/- mice showed a significant (p=0.36) protection from RGC loss following ET-1 administration, compared to wild type mice injected with ET-1. A significant decrease in axonal counts and an increase in the collapsed axons was found in ET-1 injected mice eyes. ConclusionJNK2 appears to play a major role in ET-1 mediated loss of RGCs in mice. Neuroprotective effects of JNK2 following ET-1 administration occur mainly in the soma and not in the axons of RGCs.

neuroscience↗

Oral administration of a dual ETA/ETB receptor antagonist promotes neuroprotection in a rodent model of glaucoma

PurposeGlaucoma is a neurodegenerative disease associated with elevated intraocular pressure and characterized by optic nerve axonal degeneration, cupping of the optic disc and loss of retinal ganglion cells (RGCs). The endothelin (ET) system of vasoactive peptides (ET-1, ET-2, ET-3) and their G-protein coupled receptors (ETA and ETB receptors) have been shown to be contributors to the pathophysiology of glaucoma. The purpose of this study was to determine if administration of the endothelin receptor antagonist, macitentan, after the onset of IOP elevation, was neuroprotective to retinal ganglion cells in ocular hypertensive rats. MethodsBrown Norway rats were subjected to the Morrison model of ocular hypertension by injection of hypertonic saline through episcleral veins. Macitentan (5 and 10 mg/kg body wt/day) was administered orally following the elevation of IOP and rats with IOP elevation were maintained for 4 weeks. RGC function was determined by pattern electroretinography at 2 and 4 weeks post IOP elevation. Rats were euthanized by approved humane methods and retinal flat-mounts generated were immunostained with RGC-selective markers RBPMS and Brn3a. RGC counts were conducted in a masked manner. ResultsA significant protection of retinal ganglion cells against cell loss was found following oral administration of macitentan (5 and 10 mg/kg body wt/day) in rats with elevated intraocular pressure. In addition, treatment with macitentan was able to preserve RGC function as measured by pattern ERG analysis. ConclusionsMacitentan was able to promote neuroprotection independent of IOP-lowering suggesting that this could complement existing treatments to prevent neurodegeneration during ocular hypertension. The findings presented have implications for the use of macitentan as an oral formulation to promote neuroprotection in glaucoma patients.

neuroscience↗

The Endothelin Receptor Antagonist Macitentan Ameliorates Endothelin-Mediated Vasoconstriction and Promotes Neuroprotection of Retinal Ganglion Cells in Rats

PurposeTo determine if dietary administration of the dual ETA/ ETB receptor antagonist, macitentan, could protect retinal ganglion cells (RGCs) following endothelin-1 (ET-1) mediated vasoconstriction in Brown Norway rats. MethodsAdult male and female Brown Norway rats were either untreated or treated with macitentan (5 mg/kg body weight) once a day for 3 days followed by intravitreal injection of either 4 l of 500 M ET-1 (2 nmole/eye) or vehicle in one eye. Imaging of the retinal vasculature using fluorescein angiography was carried out at various time points, including, 5, 10, 15, 25 and 30 minutes. Following the imaging of the vasculature, rats were either treated with macitentan (5 mg/kg/body weight in dietary gels) or untreated (control gels without medication). Following treatments, rats were euthanized, retinal flat mounts were prepared, immunostained for RGC marker Brn3a, imaged and surviving RGCs were counted in a masked manner. ResultsVasoconstrictive effects following intravitreal ET-1 injection were greatly reduced in rats administered with macitentan in the diet prior to the ET-1 administration. ET-1 intravitreal injection produced a 31% loss of RGCs which was significantly reduced in macitentan-treated rats. Following ET-1 administration, GFAP immunostaining was increased in the ganglion cell layer as well as in the retrolaminar region, suggestive of astrocytic activation by ET-1 administration. RGC numbers in macitentan treated and ET-1 injected rats were similar to that observed in control retinas. ConclusionsET-1-mediated neurodegeneration could occur through both vascular and cellular mechanisms. The endothelin receptor antagonist, macitentan, has neuroprotective effects in retinas of Brown Norway rats that occurs through different mechanisms, including, enhancement of RGC survival and reduction ET-1 mediated vasoconstriction.

neuroscience↗