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Dopamine Attenuates Ketamine-Induced Neuronal Apoptosis in the Developing Rat Retina Independent of Early Synchronized Spontaneous Network Activity

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Journal Mol Neurobiol
Date 2016 May 15
PMID 27177547
Citations 5
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Abstract

Deprivation of spontaneous rhythmic electrical activity in early development by anesthesia administration, among other interventions, induces neuronal apoptosis. However, it is unclear whether enhancement of neuronal electrical activity attenuates neuronal apoptosis in either normal development or after anesthesia exposure. The present study investigated the effects of dopamine, an enhancer of spontaneous rhythmic electrical activity, on ketamine-induced neuronal apoptosis in the developing rat retina. TUNEL and immunohistochemical assays indicated that ketamine time- and dose-dependently aggravated physiological and ketamine-induced apoptosis and inhibited early-synchronized spontaneous network activity. Dopamine administration reversed ketamine-induced neuronal apoptosis, but did not reverse the inhibitory effects of ketamine on early synchronized spontaneous network activity despite enhancing it in controls. Blockade of D1, D2, and A2A receptors and inhibition of cAMP/PKA signaling partially antagonized the protective effect of dopamine against ketamine-induced apoptosis. Together, these data indicate that dopamine attenuates ketamine-induced neuronal apoptosis in the developing rat retina by activating the D1, D2, and A2A receptors, and upregulating cAMP/PKA signaling, rather than through modulation of early synchronized spontaneous network activity.

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References
1.
Zhou C, Lu Y, Li X, Luo C, Zhang Z, You J . Adsorptive stripping voltammetric determination of antimony. Talanta. 2008; 46(6):1531-6. DOI: 10.1016/s0039-9140(98)00026-5. View

2.
Brambrink A, Evers A, Avidan M, Farber N, Smith D, Zhang X . Isoflurane-induced neuroapoptosis in the neonatal rhesus macaque brain. Anesthesiology. 2010; 112(4):834-41. PMC: 3962067. DOI: 10.1097/ALN.0b013e3181d049cd. View

3.
Famiglietti E . A structural basis for omnidirectional connections between starburst amacrine cells and directionally selective ganglion cells in rabbit retina, with associated bipolar cells. Vis Neurosci. 2002; 19(2):145-62. DOI: 10.1017/s0952523802191139. View

4.
Weissman T, Riquelme P, Ivic L, Flint A, Kriegstein A . Calcium waves propagate through radial glial cells and modulate proliferation in the developing neocortex. Neuron. 2004; 43(5):647-61. DOI: 10.1016/j.neuron.2004.08.015. View

5.
Blankenship A, Feller M . Mechanisms underlying spontaneous patterned activity in developing neural circuits. Nat Rev Neurosci. 2009; 11(1):18-29. PMC: 2902252. DOI: 10.1038/nrn2759. View