Epinephrine: A Potential Neurotransmitter in Retina
Эпинефрин: потенциальный нейромедиатор в сетчатке
1983-05-01
SCID: 54.1/s2xxgrhv
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epinephrinephenylethanolamine-N-methyltransferasephotic stimulationretinasuperior cervical ganglionectomy
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Abstract (AI)
Dopamine (DA), norepinephrine (NE), and epinephrine (EPI) are present in rat retina. DA is the major catecholamine, whereas NE and EPI represent approximately 5% of the DA content. DA is contained in a subpopulation of amacrine cells and has been the subject of numerous studies. We investigated the origin and properties of NE and EPI in retina. Following superior cervical ganglionectomy, there was a decrease in NE content, but no decrease in EPI or phenylethanolamine-N-methyltransferase (PNMT) activity. PNMT in retina has many of the substrate-specificity and inhibitor-sensitivity characteristics of other tissues. Enzyme activity is enhanced in newborn rats by treatment with dexamethasone. Exposure to a lighted environment increases retinal EPI in normal and superior cervical ganglionectomized rats. EPI content increased for more than 2 h in a lighted environment. We conclude that most of the NE is contained within the sympathetic neurons that innervate the eye from the superior cervical ganglion, whereas EPI is contained in retinal elements that are responsive to photic stimulation.
Key Findings
1
Light exposure increases retinal epinephrine in both normal and ganglionectomized rats, with elevation persisting for more than 2 hours, suggesting photically responsive retinal elements contain epinephrine.
2
Most retinal norepinephrine resides in sympathetic neurons innervating the eye from the superior cervical ganglion.
3
Rat retina contains dopamine, norepinephrine, and epinephrine; norepinephrine and epinephrine each comprise approximately 5% of dopamine content.
4
Retinal phenylethanolamine-N-methyltransferase exhibits tissue-like substrate specificity and inhibitor sensitivity, with activity enhanced by dexamethasone in newborn rats.
5
Superior cervical ganglionectomy decreases retinal norepinephrine but not epinephrine or phenylethanolamine-N-methyltransferase activity, indicating distinct origins.
Research Object
Epinephrine-containing retinal elements in rat retina
Research Subject
The retinal origin, biochemical properties, and light responsiveness of epinephrine, including its relationship to phenylethanolamine-N-methyltransferase activity
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1983-05-01
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