Development of synapses between chick retinal neurons in dispersed culture
- 8 September 1989
- journal article
- research article
- Published by Wiley in Journal of Comparative Neurology
- Vol. 287 (2) , 213-224
- https://doi.org/10.1002/cne.902870205
Abstract
Morphological criteria allow several kinds of synapse to be recognized in the vertebrate retina. It is, however, not presently known if, or how, these morphological differences reflect physiological distinctions. Since a proper investigation of synaptic physiology in the intact retina is compromised by technical difficulties, we have examined dispersed cultures to discover if they are likely to provide a more tractable physiological preparation. The chief question addressed here concerns the extent to which normal synaptic development takes place in the impoverished conditions of dispersed cell culture.Cultures were established from embryonic day 8 chick retina and fixed for microscopy on embryonic equivalent (E.E.) days 12, 14, 16, and 18. Neuronal processes appeared shortly after plating and continued to increase in number and extent through E.E. 16. Cone cells were recognizable by virtue of their distinctive oil droplets. Two classes of cone could be distinguished on the basis of the density of their cytoplasmic staining. Presynaptic ribbons could be observed in cone cells on E.E. 12, but characteristic dyad and triad postsynaptic organization was seldom present at this stage nor was it often observed at subsequent times. An increase in the number of ribbon synapses in culture was seen on E.E. 18. These synapses may represent those of bipolar cells. Conventional synapses were found at all times examined but the number of these increased greatly between E.E. 14 and 16. Of these conventional synapses, we found some whose anatomy was characteristic of synapses made by amacrine cells as well as some whose anatomy was characteristic of synapses made by bipolar cells.Keywords
This publication has 43 references indexed in Scilit:
- Depolarization Without Calcium Can Release γ-Aminobutyric Acid from a Retinal NeuronScience, 1987
- Expression of cone-like properties by chick embryo neural retina cells in glial-free monolayer cultures.The Journal of cell biology, 1984
- Gap junctions in the outer plexiform layer of the chick retina: thin section and freeze-fracture studiesJournal of Neurocytology, 1981
- Identified neurones isolated from leech CNS make selective connections in cultureNature, 1979
- Scanning electron microscopy of developing photoreceptors in the chick retinaThe Anatomical Record, 1979
- Photoreceptors and oil droplet colors in the red area of the pigeon retinaJournal of Comparative Neurology, 1978
- Synaptic organization of the inner plexiform layer in the retina of the tiger salamanderJournal of Neurocytology, 1974
- The inner plexiform layer of the vertebrate retina: A quantitative and comparative electron microscopic analysisJournal of Comparative Neurology, 1970
- Electron microscopic analysis of aggregation of embryonic cells: the structure and differentiation of aggregates of neural retina cellsDevelopmental Biology, 1970
- An electron microscope study of types of receptor in the chick retinaJournal of Comparative Neurology, 1967