Literature DB >> 22081406

Regulation of [³H]d-aspartate release by the 5-F(2t)-isoprostane and its 5-epimer in isolated bovine retina.

Jamal Jamil1, Ashley Wright, Na'cara Harrison, Edem Kegey, Arnecia Faye Flowers, Namonique Jarell Flyod, Casey Kotera, Alexandre Guy, Jean-Marie Galano, Thierry Durand, Ya Fatou Njie-Mbye, Sunny E Ohia, Catherine A Opere.   

Abstract

We have evidence that 15-F₂-isoprostanes (15-F₂-IsoPs) regulate excitatory neurotransmitter release in ocular tissues. Although 5-F₂-IsoPs are abundantly produced in mammals, their pharmacological actions on neurotransmitter release remain unknown. In the present study, we compared the effect of the 5-F₂-IsoP epimer pair, 5-F(2t)-IsoP (C5-OH in β-position) and 5-epi-5-F(2t)-IsoP (C5-OH in α-position), on K⁺-evoked [³H]D-aspartate release in isolated bovine retina. We further examined the role of prostanoid receptors on the inhibitory action of 5-epi-5-F(2t)-IsoP on [³H]D-aspartate overflow. Isolated bovine retina were prepared for studies of K⁺-evoked release of [³H]D-aspartate using the superfusion method. 5-epi-5-F(2t)-IsoP (0.01 nM to 1 μM), attenuated K⁺-evoked [³H]D-aspartate release in a concentration-dependent manner, with the inhibitory effect of 26.9% (P < 0.001; IC₂₅ = 0.2 μM) being achieved at 1 μM concentration. Its 5-(S)-OH-epimer, 5-F(2t)-IsoP (0.1 nM-1 μM), exhibited an inhibitory biphasic action, yielding a maximal response of 35.7% (P < 0.001) at 10 nM concentration of the drug (IC₂₅ value of 3 nM). Although the prostanoid-receptor antagonists, AH 6809 (10 μM; EP₁₋₃/DP) and BAY-u3405 (10 μM; DP/Tx) exhibited no effect on 5-epi-5-F(2t)-IsoP (10 nM-1 μM)-mediated inhibition, SC-19220 (1 μM; EP₁) completely reversed 5-epi-5-F(2t)-IsoP (0.1 μM and 1 μM)-induced attenuation of K⁺-evoked [³H]D-aspartate release. Similarly, both SC-51322 (10 μM; EP₁ and AH 23848 (1 μM; EP₄) reversed the inhibitory action elicited by 5-epi-5-F(2t)-IsoP (0.1 μM) on the neurotransmitter release. We conclude that the 5-F₂-IsoP epimer pair, 5-F(2t)-IsoP and 5-epi-5-F(2t)-IsoP, attenuate K⁺-induced [³H]D-aspartate release in isolated bovine retina presumably via prostanoid receptor dependent mechanisms. The trans-orientation of the allylic hydroxyl group at position C5 accounts for the apparent biphasic response exhibited by 5-F(2t)-IsoP on excitatory neurotransmitter release.

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Year:  2011        PMID: 22081406     DOI: 10.1007/s11064-011-0645-5

Source DB:  PubMed          Journal:  Neurochem Res        ISSN: 0364-3190            Impact factor:   3.996


  62 in total

1.  Neurotoxic effects of low doses of glutamate on purified rat retinal ganglion cells.

Authors:  Y Otori; J Y Wei; C J Barnstable
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2.  In vivo effect of 8-epi-PGF2alpha on retinal circulation in diabetic and non-diabetic rats.

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3.  8-Isoprostaglandin F2a and ascorbic acid concentration in the aqueous humour of patients with exfoliation syndrome.

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Review 4.  Molecular basis of glutamate toxicity in retinal ganglion cells.

Authors:  N J Sucher; S A Lipton; E B Dreyer
Journal:  Vision Res       Date:  1997-12       Impact factor: 1.886

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6.  Amino-acid levels in subretinal and vitreous fluid of patients with retinal detachment.

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7.  Cyclooxygenase-dependent formation of the isoprostane, 8-epi prostaglandin F2 alpha.

Authors:  D Pratico; J A Lawson; G A FitzGerald
Journal:  J Biol Chem       Date:  1995-04-28       Impact factor: 5.157

8.  8-iso-PGE2 stimulates anion efflux from airway epithelial cells via the EP4 prostanoid receptor.

Authors:  Andrew P Joy; Elizabeth A Cowley
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Review 9.  Beyond prostaglandins--chemistry and biology of cyclic oxygenated metabolites formed by free-radical pathways from polyunsaturated fatty acids.

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10.  Expression of thromboxane synthase and the thromboxane-prostanoid receptor in the mouse and rat retina.

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  4 in total

1.  Role of the non-enzymatic metabolite of eicosapentaenoic acid, 5-epi-5-F3t-isoprostane in the regulation of [ (3)H]D-aspartate release in isolated bovine retina.

Authors:  Jamal Jamil; Pratik Bankhele; Ankita Salvi; Jaimee E Mannix; Camille Oger; Alexandre Guy; Jean-Marie Galano; Thierry Durand; Ya Fatou Njie-Mbye; Sunny E Ohia; Catherine A Opere
Journal:  Neurochem Res       Date:  2014-09-25       Impact factor: 3.996

Review 2.  Lipid peroxidation generates biologically active phospholipids including oxidatively N-modified phospholipids.

Authors:  Sean S Davies; Lilu Guo
Journal:  Chem Phys Lipids       Date:  2014-04-02       Impact factor: 3.329

Review 3.  Isoprostanes and 4-hydroxy-2-nonenal: markers or mediators of disease? Focus on Rett syndrome as a model of autism spectrum disorder.

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Journal:  Oxid Med Cell Longev       Date:  2013-06-13       Impact factor: 6.543

Review 4.  Lipid peroxidation: pathophysiological and pharmacological implications in the eye.

Authors:  Ya Fatou Njie-Mbye; Madhura Kulkarni-Chitnis; Catherine A Opere; Aaron Barrett; Sunny E Ohia
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  4 in total

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