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PMID: 2337919 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Regeneration of a chimeric retina from single cells in vitro: cell-lineage-dependent formation of radial cell columns by segregated chick and quail cells.

Cell and tissue research ·Vol. 259 ·No. 2 ·1990-02-00 ·Pages 187-98

Layer PG, Alber R, Mansky P, Vollmer G, Willbold E

Abstract

We report here that similar to E6-chicken retinal cells, dissociated cells from 5.5-day-old (E5.5) quail retinae reaggregate in rotary culture, multiply about tenfold and reestablish histotypical areas. These cellular aggregates include all nuclear layers either with inversed or correct laminar polarity, depending on the local origin of the cells (called "rosetted" and "laminar" in-vitro-retinae (IVR), respectively; Layer and Willbold 1989). In combined cultures, chick and quail cells are evenly mixed only during the first two days of culture. Along with the assembly of single cells into rosettes and then into discrete laminae, sectors of chick and quail cells begin to segregate. They are delineated by borders running radially through all three nuclear layers. Thus, interspecies migration of cells at this advanced stage of differentiation is strongly inhibited. Concomitant with this segregation, coherent radial columns spanning all three layers but containing cells from either species only, can be traced histologically. We conclude that a weak segregation of chick and quail retinal cells takes place already at the single cell level, but that the permanent segregation of entire tissue parts must be due to clonal cellular proliferation within the IVR in conjunction with some developmental-structure mechanism retaining clonal progenies within a columnar order.

MeSH Terms
Animals Chick Embryo Chimera/physiology Neuronal Plasticity Quail Retina/cytology,embryology,physiology Species Specificity
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Layer P G
Max-Planck-Institut für Entwicklungsbiologie, Tübingen, Federal Republic of Germany.
Alber R
Mansky P
Vollmer G
Willbold E
References (44)
44 references, click to expand
  1. Clonal analysis and cell lineages of the vertebrate central nervous system.
    Annu Rev Neurosci. 1985;8:71-102 PMID: 2580474
  2. Early ganglion cell differentiation in the mouse retina: an electron microscopic analysis utilizing serial sections.
    Dev Biol. 1974 Apr;37(2):381-416 PMID: 4826283
  3. The process of reconstruction of histological architecture from dissociated retinal cells.
    Wilhelm Roux Arch Entwickl Mech Org. 1973 Dec;171(4):312-330 PMID: 28304612
  4. Embryonic chicken retinal cells can regenerate all cell layers in vitro, but ciliary pigmented cells induce their correct polarity.
    Cell Tissue Res. 1989 Nov;258(2):233-42 PMID: 2582475
  5. Analysing cell lineage with a recombinant retrovirus.
    Trends Neurosci. 1989 Jan;12(1):21-8 PMID: 2471334
  6. Use of a recombinant retrovirus to study post-implantation cell lineage in mouse embryos.
    EMBO J. 1986 Dec 1;5(12):3133-42 PMID: 3102226
  7. Asymmetrical developmental pattern of uptake of Lucifer Yellow into amacrine cells in the embryonic chick retina.
    Neuroscience. 1983 Aug;9(4):931-41 PMID: 6194479
  8. Retrovirus vectors and their applications in neurobiology.
    Neuron. 1988 Jul;1(5):345-53 PMID: 3078410
  9. A common progenitor for neurons and glia persists in rat retina late in development.
    Nature. 1987 Jul 9-15;328(6126):131-6 PMID: 3600789
  10. Multipotent precursors can give rise to all major cell types of the frog retina.
    Science. 1988 Mar 4;239(4844):1142-5 PMID: 2449732
  11. The pattern of neurogenesis in the retina of the rat.
    Z Anat Entwicklungsgesch. 1970;131(1):45-67 PMID: 4917964
  12. Improved histology for the chick-quail chimera.
    Stain Technol. 1984 Mar;59(2):105-11 PMID: 6207629
  13. Determination of the developmental pattern of retinal ganglion cells in chick embryos by Golgi impregnation and other methods.
    Anat Embryol (Berl). 1980;158(3):329-47 PMID: 7378164
  14. From enzymes to visual perception: a bridge too far?
    Trends Neurosci. 1988 Sep;11(9):380-7 PMID: 2469202
  15. Reaggregation of embryonic chick retina cells: pigment epithelial cells induce a high order of stratification.
    Neurosci Lett. 1984 Jul 27;48(2):191-6 PMID: 6483281
  16. Cellular determination in the Xenopus retina is independent of lineage and birth date.
    Neuron. 1988 Mar;1(1):15-26 PMID: 3272153
  17. A monoclonal antibody that binds to cones.
    Invest Ophthalmol Vis Sci. 1986 May;27(5):831-6 PMID: 3700033
  18. Lucifer yellow stains displaced amacrine cells of the chicken retina during embryonic development.
    Neurosci Lett. 1982 Aug 16;31(2):99-104 PMID: 6182510
  19. Binding of FITC-coupled peanut-agglutinin (FITC-PNA) to embryonic chicken retinas reveals developmental spatio-temporal patterns.
    Brain Res. 1983 Jun;284(2-3):223-9 PMID: 6871724
  20. Reconstruction of tissues by dissociated cells. Some morphogenetic tissue movements and the sorting out of embryonic cells may have a common explanation.
    Science. 1963 Aug 2;141(3579):401-8 PMID: 13983728
  21. Cell interactions and histogenesis in embryonic neural aggregates.
    Exp Cell Res. 1973 Mar 15;77(1):367-75 PMID: 4570358
  22. Responses of cultured neural retinal cells to substratum-bound laminin and other extracellular matrix molecules.
    Dev Biol. 1985 Nov;112(1):100-14 PMID: 3902534
  23. Membrane glycoproteins involved in neurite fasciculation.
    J Cell Biol. 1987 Feb;104(2):343-53 PMID: 3805123
  24. Monoclonal antibodies specific for glia in the chick nervous system.
    Brain Res. 1985 Nov;355(1):111-20 PMID: 3907748
  25. Cholinesterases and cell proliferation in "nonstratified" and "stratified" cell aggregates from chicken retina and tectum.
    Cell Tissue Res. 1987 Dec;250(3):481-7 PMID: 3690629
  26. An autoradiographic analysis of the time of appearance of neurons in the developing chick neural retina.
    Dev Biol. 1974 May;38(1):30-40 PMID: 4856982
  27. Retinal pigmented epithelial cells induced to transdifferentiate to neurons by laminin.
    Nature. 1987 Nov 5-11;330(6143):68-71 PMID: 3499570
  28. Recent progress in studies of the transdifferentiation of eye tissue in vitro.
    Cell Differ. 1983 Nov;13(3):177-83 PMID: 6365331
  29. Reaggregation of chick retinal and mixtures of retinal and pigment epithelial cells: the degree of laminar organization is dependent on age.
    Neurosci Lett. 1986 Jan 2;63(1):91-5 PMID: 2419803
  30. Lentoids in aggregates of embryonic neural retina cells.
    Cell Differ. 1981 Jan;10(1):39-46 PMID: 7008954
  31. Comparative localization of acetylcholinesterase and pseudocholinesterase during morphogenesis of the chicken brain.
    Proc Natl Acad Sci U S A. 1983 Oct;80(20):6413-7 PMID: 6578516
  32. Lineage analysis in the vertebrate nervous system by retrovirus-mediated gene transfer.
    Proc Natl Acad Sci U S A. 1987 Jan;84(1):156-60 PMID: 3099292
  33. A biological cell labeling technique and its use in expermental embryology.
    Dev Biol. 1973 Jan;30(1):217-22 PMID: 4121410
  34. Histiotypic organization and cell differentiation in rat retinal reaggregate cultures.
    Brain Res. 1987 Dec 29;437(2):298-308 PMID: 3435839
  35. An in vitro model of proliferation and differentiation of the chick retina: coaggregates of retinal and pigment epithelial cells.
    J Neurosci. 1986 Jul;6(7):1885-96 PMID: 3525774
  36. Early stages in the reaggregation of embryonic chick neural retina cells.
    Exp Cell Res. 1969 Oct;57(2):462-6 PMID: 5347643
  37. Development of differential affinities and positional information in embryonic retina cells: inhibition by BrdU.
    Cell Differ. 1981 Dec;10(6):317-27 PMID: 7317947
  38. Specification of cerebral cortical areas.
    Science. 1988 Jul 8;241(4862):170-6 PMID: 3291116
  39. A Feulgen-positive nucleolus.
    Exp Cell Res. 1973 Mar 15;77(1):459-68 PMID: 4120441
  40. Biochemical characterization of polypeptide components involved in neurite fasciculation and elongation.
    Eur J Biochem. 1987 Nov 2;168(3):551-61 PMID: 3665934
  41. Ferrier lecture. Functional architecture of macaque monkey visual cortex.
    Proc R Soc Lond B Biol Sci. 1977 Jul 28;198(1130):1-59 PMID: 20635
  42. Does differential adhesion govern self-assembly processes in histogenesis? Equilibrium configurations and the emergence of a hierarchy among populations of embryonic cells.
    J Exp Zool. 1970 Apr;173(4):395-433 PMID: 5429514
  43. A golgi study on the early sequence of differentiation of ganglion cells in the chick embryo retina.
    Anat Embryol (Berl). 1981;161(3):305-17 PMID: 7187824
  44. Cell line segregation during peripheral nervous system ontogeny.
    Science. 1986 Mar 28;231(4745):1515-22 PMID: 3952494
Article Info
Journal
Cell and tissue research
Abbr.
Cell Tissue Res
ISSN
0302-766X
Published
1990-02-00
Pages
187-98
Language
English
Region
Germany
NLM ID
0417625
Subset
IM
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