Access the full text.
Sign up today, get DeepDyve free for 14 days.
(1961)
Die Entwicklung der Organe des Zwischenhirndaches (Epipyse und Plexus chorioideus anterior) bei der Sturmmowe Larus canus L
(1986)
Transient expression of a ‘lensspecific
K. Watanabe (1986)
Multipotentiality in differentiation of the pineal as revealed by cell culture.Current topics in developmental biology, 20
Hector Rodriguez, Malcolm McGavran (1969)
A modified DOPA reaction for the diagnosis and investigation of pigment cells.American journal of clinical pathology, 52 2
G. David, J. Herbert, G. Wright (1973)
The ultrastructure of the pineal ganglion in the ferret.Journal of anatomy, 115 Pt 1
C. Lièvre, N. Douarin (1975)
Mesenchymal derivatives of the neural crest: analysis of chimaeric quail and chick embryos.Journal of embryology and experimental morphology, 34 1
G. Brunner, G. Tschank (1982)
Contracting striated muscle fibres differentiated from primary rat pituitary cultures, 224
Barabanov Vm (1977)
[Detection of delta-crystallins in the adenohypophysis of chick embryos].Proceedings of the USSR Academy of Sciences, 234
A. Oksche, H. Hartwig (1979)
Pineal sense organs--components of photoneuroendocrine systems.Progress in brain research, 52
J. Freschi, A. Parfitt, W. Shain (1979)
Electrophysiology and pharmacology of striated muscle fibres cultured from dissociated neonatal rat pineal glandsThe Journal of Physiology, 293
(1961)
Lo sviluppo embryionale della quaglia giapuonese
J. Piatigorsky, G. Wistow (1989)
Enzyme/crystallins: Gene sharing as an evolutionary strategyCell, 57
Enrique Santamarina (1958)
Melanin pigmentation in bovine pineal gland and its possible correlation with gonadal function.Canadian journal of biochemistry and physiology, 36 2
kmenové buňky, M. Grim, Struktura přednášky, Indukce neurální, transformace buněk, neurální lišty, B. Carlson, H. Mangold, N. Douarin, Chaya Kalcheim, C. Lièvre, N. Douarin, Migrace hlavové, Molekulární mechanizmy, NL migracebuněk, Migraci ovlivňují, Parakrinní signální, systémy migrace, Migrace buněk (1975)
Mesenchymal derivatives of the neural crest: analysis of chimaeric quail and chick embryos.Development, 34
Yasuji Ueda, T. Okada (1986)
Transient expression of a 'lens-specific' gene, delta-crystallin, in the embryonic chicken adenohypophysis.Cell differentiation, 19 3
Y. Itoh, T. Okada, H. Ide, G. Eguchi (1975)
THE DIFFERENTIATION OF PIGMENT CELLS IN CULTURES OF CHICK EMBRYONIC NEURAL RETINAEDevelopment, 17
(1949)
Over de ontwikkeling, de determinatie en de betekenis van de epiphyse en de paraphyse van de amphiben
K. Watanabe, H. Aoyama, N. Tamamaki, M. Yasujima, Y. Nojyo, Y. Ueda, T. Okada (1985)
Oculopotency of embryonic quail pineals as revealed by cell culture studies.Cell differentiation, 16 4
K. Nomura (1982)
Differentiation of lens and pigment cells in cultures of brain cells of chick embryos.Differentiation; research in biological diversity, 22 3
N. Carvalho, R. Picart, S. Moortele, C. Tougard, A. Tixier-vidal (1989)
Laminin induces formation of neurite-like processes and potentiates prolactin secretion by GH3 rat pituitary cells.Differentiation; research in biological diversity, 40 2
K. Watanabe, H. Aoyama, N. Tamamaki, T. Sonomura, T. Okada, G. Eguchi, Y. Nojyo (1988)
An embryonic pineal body as a multipotent system in cell differentiation.Development, 103 1
G. Eguchi, S. Abe, K. Watanabe (1974)
Differentiation of lens-like structures from newt iris epithelial cells in vitro.Proceedings of the National Academy of Sciences of the United States of America, 71 12
K. Nakano, H. Nakamura (1985)
Origin of the irideal striated muscle in birds.Journal of embryology and experimental morphology, 88
Kenji Watanabe, H. Aoyama, Yoshiaki Nojyo, T. Matsuura, Tokindo Okada (1981)
Muscle Differentiation in Cultured Pineal Body Cells of Neonatal RatsDevelopment, 23
Y. Itoh, G. Eguchi (1986)
In vitro analysis of cellular metaplasia from pigmented epithelial cells to lens phenotypes: a unique model system for studying cellular and molecular mechanisms of "transdifferentiation".Developmental biology, 115 2
Brian Zimmerman, M. Tso (1975)
Morphologic evidence of photoreceptor differentiation of pinealocytes in the neonatal ratThe Journal of Cell Biology, 66
R. M. Eakin (1970)
A third eye, 58
E. Tapp (1979)
The histology and pathology of the human pineal gland.Progress in brain research, 52
V. M. Barabanov (1977)
Expression of δ‐crystallin in the adenohy‐pophysis of chick embryos, 234
M. Araki, K. Watanabe, F. Tokunaga, T. Nonaka (1988)
Phenotypic expression of photoreceptor and endocrine cell properties by cultured pineal cells of the newborn rat.Cell differentiation and development : the official journal of the International Society of Developmental Biologists, 25 2
K. Unsicker, B. Krisch, U. Otten, H. Thoenen (1978)
Nerve growth factor-induced fiber outgrowth from isolated rat adrenal chromaffin cells: impairment by glucocorticoids.Proceedings of the National Academy of Sciences of the United States of America, 75 7
P. Claude, I. Parada, K. Gordon, P. D'Amore, J. Wagner (1988)
Acidic fibroblast growth factor stimulates adrenal chromaffin cells to proliferate and to extend neurites, but is not a long-term survival factor.Neuron, 1 9
R. Kodama, G. Eguchi (1982)
Dissociated limb bud cells of chick embryos can express lens specificity when reaggregated and cultured in vitro.Developmental biology, 91 1
野村 一也 (1982)
Differentiation of lens and pigment cells in cultures of brain cells of chick embryos
Yoshiaki Itoh (1976)
Enhancement of differentiation of lens and pigment cells by ascorbic acid in cultures of neural retinal cells of chick embryos.Developmental biology, 54 1
M. Wier, V. Lennon (1981)
Differentiation of skeletal muscle from dissociated optic nerve cells Immunocytochemical observationsJournal of Neuroimmunology, 1
(1985)
Sensory cells of the “ rod - ” and “ cone - type ” in the pineal organ of Rana es - briol
W. Quay (1959)
Striated muscle in the mammalian pineal organThe Anatomical Record, 133
F. Omlin, Jocelyne Waldmeyer (1989)
Differentiation of neuron-like cells in cultured rat optic nerves: a neuron or common neuron-glia progenitor?Developmental biology, 133 1
Yuichi Watanabe (1989)
Differentiation of Striated Muscle Fibers in Monolayer Cultures of Rat Anterior PituitaryDevelopment, 31
The repertoire of differentiating potency of mammalian and avian pineal cells has been examined utilizing cell culture technique. Skeletal muscle fibers are differentiated from pineal cells of the rat under the usual culture condition and from those of quail under hypertonic conditions. Myogenesis of pineal cells may be explained from the ontogeny of the pineal body. Anlagen of a pineal body are situated in bilateral cephalic neural folds, which also supply multipotent neural crest cells. In some conditions, almost all quail pineal cells are able to differentiate into pigmented epithelial cells and/or lens cells. Opsin containing cells found in culture of rat pineal cells may be in a similar category reflecting the “third eye”: the phylogenetic ancestor of the pineal body of avian and mammalian species. Neuron‐like cells have also been reported and neuronal morphology has been intensified under the effect of testicular hyaluronidase. The cytodifferentiation described above is suggested to be different expressions of a single type of progenitor cells in the pineal body. In relation to multipotentiality of pineal cells, the original differentiating state of pineal cells is interesting; it has been found that tyrosinase is expressed from the beginning of pineal formation and that its expression is stage‐specific (during embryonic period) and site‐specific (predominance in the dorsal half of the pineal body and in the apical cytoplasm of the pineal cell). In the 8 day quail embryo used for culture studies, three differentiating states as to tyrosinase are noticed. However, the distinction may be apparent, as even the cells negative in tyrosinase in this stage are still ready to express tyrosinase in the suitable culture condition. Pineal cells are flexible and surprisingly susceptible to environmental factors and useful for the study of cell differentiation in general. © 1992 Wiley‐Liss, Inc.
Microscopy Research and Technique – Wiley
Published: Jan 1, 1992
Keywords: ; ; ; ; ; ;
Read and print from thousands of top scholarly journals.
Already have an account? Log in
Bookmark this article. You can see your Bookmarks on your DeepDyve Library.
To save an article, log in first, or sign up for a DeepDyve account if you don’t already have one.
Copy and paste the desired citation format or use the link below to download a file formatted for EndNote
Access the full text.
Sign up today, get DeepDyve free for 14 days.
All DeepDyve websites use cookies to improve your online experience. They were placed on your computer when you launched this website. You can change your cookie settings through your browser.