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. 2005 Jul;321(1):1-8.
doi: 10.1007/s00441-005-1122-8. Epub 2005 May 18.

Synaptic connections of cone bipolar cells that express the neurokinin 1 receptor in the rabbit retina

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Synaptic connections of cone bipolar cells that express the neurokinin 1 receptor in the rabbit retina

In-Beom Kim et al. Cell Tissue Res. 2005 Jul.

Abstract

We have investigated and further characterized, in the rabbit retina, the synaptic connectivity of the ON-type cone bipolar cells that are immunoreactive for an antibody against the neurokinin-1 receptor (NK1R). NK1R-immunoreactive bipolar cell axons terminate in stratum 4 of the inner plexiform layer. The axons of NK1R-positive bipolar cells receive synaptic inputs from amacrine cells through conventional synapses and from putative AII amacrine cells via gap junctions. The major outputs from NK1R-positive bipolar cells make contacts with amacrine cell processes. The most frequent postsynaptic dyads comprise two amacrine cell processes. Double-labeling experiments with antibodies against NK1R and either calretinin or glycine have demonstrated that NK1R-immunoreactive bipolar cells form gap junctions with AII amacrine cells. Thus, NK1R-positive cone bipolar cells, together with calbindin-positive cone bipolar cells, may play an important role in transferring rod signals to the ON-type ganglion cells of the cone pathway in the rabbit retina.

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