Experimental malnutrition of neurons and glial cells in vitro. I. first stages of degeneration
Lodin, Z.; Faltin, J.; Booher, J.; Hartman, J.
Acta Histochemica 48(1): 156-171
1974
ISSN/ISBN: 0065-1281 PMID: 4212001 Document Number: 82021
Document emailed within 1 workday
Related Documents
Lodin, Z.; Faltin, J.; Booher, J.; Hartman, J. 1974: Experimental malnutrition of neurons and glial cells in vitro. II. Activation of lysosomes and cell death Acta Histochemica 48(2): 262-285Simonneau, M.; Boisseau, S.; Valmier, J.; Poujeol, C. 1987: In vitro model systems permitting the analysis of the differentiation of mammalian progenitor cells either into neurons or into glial cells Journal de Physiologie 82(4): 336-345
Mitoma, J.; Furuya, S.; Hirabayashi, Y. 1999: A novel metabolic interaction between neurons and glial cells through L-serine: an essential role for astroglia-derived L-serine in the survival and development of CNS neurons Seikagaku. Journal of Japanese Biochemical Society 71(7): 536-541
Massa, P.T.; Wege, H.; ter Meulen, V. 1986: Analysis of murine hepatitis virus (JHM strain) tropism toward Lewis rat glial cells in vitro. Type i astrocytes and brain macrophages (microglia) as primary glial cell targets Laboratory Investigation; a Journal of Technical Methods and Pathology 55(3): 318-327
Mäkinen, A.; Savolainen, H.; Lehtonen, E.; Vainio, H. 1977: Reduced sulfhydryl groups of rat neurons, glial cells and neurofilaments Research Communications in Chemical Pathology and Pharmacology 16(3): 577-580
Cuadras, J.; Marti-Subirana, A. 1987: Glial cells of the crayfish and their relationships with neurons. An ultrastructural study Journal de Physiologie 82(4): 196-217
Kulczycki, J.; Krygier-Stojałowska, A.; Jaszczak, K.; Honczarenko, K.; Nowacki, P.; Madej, M. 1982: Deoxyribonucleoproteins in the neurons and glial cells of the brain of mice of different ages Neuropatologia Polska 20(3-4): 365-376
Krygier-Stojalowska, A.; Kulczycki, J.; Madej, M.; Nowacki, P.; Honczarenko, K. 1977: DNA content in neurons and glial cells of human brain assayed with cytophotometric methods. Preliminary communication Neuropatologia Polska 15(3): 349-356
Gorelikov, P.L.; Savel'ev, S.V. 2007: Lactate dehydrogenase isoenzymes in sympathetic neurons and satellite glial cells in normal animals and after nicotinic acetylcholine receptor blockade Morfologiia 132(4): 36-39
Kraśnicka, Z.; Borowicz, J.W.; Gajkowska, B. 1972: Ultrastructure of glial cells in tissue culture in vitro Neuropatologia Polska 10(3): 401-410
Stolzenburg, J.U.; Haas, J.; Härtig, W.; Paulke, B.R.; Wolburg, H.; Reichelt, W.; Chao, T.I.; Wolff, J.R.; Reichenbach, A. 1992: Phagocytosis of latex beads by rabbit retinal Müller (glial) cells in vitro Journal für Hirnforschung 33(4-5): 557-564
Grainger, F.; James, D.W. 1970: Association of glial cells with the terminal parts of neurite bundles extending from chick spinal cord in vitro Zeitschrift für Zellforschung und mikroskopische Anatomie 108(1): 93-104
Renkawek, K. 1972: On the histochemical and enzyme-histochemical differences between various types of glial cells cultured in vitro Neuropatologia Polska 10(2): 307-315
Kim, S.K.; Spencer, H.H.; Weatherbee, L.; Nasjleti, C.E. 1974: Changes in secretory cells during early stages of experimental carcinogenesis in the rat submandibular gland Cancer Research 34(9): 2172-2183
Zhong, D.; Kang, M.; Wang, Q.; Zhang, D.; Song, Y. 2009: Effect of Wnt-1 on the process of inducing neural stem cells into neurons by all-trans-retinoic acid in vitro Zhongguo Xiu Fu Chong Jian Wai Ke Za Zhi 23(6): 742-746
Rozenshtraukh, L.V.; Sharov, V.G.; Vikhert, A.M. 1981: Condition of the sarcolemma of subendocardial Purkinje cells in the late stages of experimental myocardial infarction in the dog Biulleten' Eksperimental'noi Biologii i Meditsiny 91(10): 406-410
Orzhekhovskaia, N.S. 2000: The neuronal-glial correlations in areas of the frontal area of the brain in children at different stages of life Morfologiia 117(2): 22-25
O'Callaghan, J.P.; Jensen, K.F. 1992: Enhanced expression of glial fibrillary acidic protein and the cupric silver degeneration reaction can be used as sensitive and early indicators of neurotoxicity Neurotoxicology 13(1): 113-122
Le-Tkhi-Kuk 1973: Retrograde degeneration of the cells of the oculomotor nucleus (nucleus oculomotorius) following unilateral enucleation of the eye (experimental study) Zhurnal Nevropatologii i Psikhiatrii Imeni S.S. Korsakova 73(1): 50-53
Ogawa, N.; Edamatsu, R.; Mizukawa, K.; Asanuma, M.; Kohno, M.; Mori, A. 1993: Degeneration of dopaminergic neurons and free radicals. Possible participation of levodopa Advances in Neurology 60: 242-250