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Mouse brain cells

Tsien J. Z. et al. Subregion- and cell type-restricted gene knockout in mouse brain. Cell 87 1317-1326,1996. [Pg.873]

The temporal appearance of myelin-related lipids and enzymes in the cultures of dissociated fetal mouse brain cells mimics the temporal development of these parameters in normal mouse or rat brain (12, 5, 29, 28). The types of myelin-related lipids and the order of magnitude of the activities of the enzymes producing some of these lipids are the same as those found in brain in vivo (30, 29, 28). [Pg.317]

Hanics J, Barna J, Xiao J et al (2012) Ablation of TNAP function compromises myelination and synaptogenesis in the mouse brain. Cell Tissue Res 349(2) 459- 71... [Pg.48]

Bartsch D, Mai JK (1991) Distribution of the 3-fucosyl-N-acetyl-lactosamine (FAL) epitope in the adult mouse brain. Cell Tiss. Res., 263, 353-366. [Pg.314]

McMahon, A.P. and Bradley, A. (1990) The Wnt-1 (int-1) proto-oncogene is required for development of a large region of the mouse brain. Cell 62 1073-1085. [Pg.145]

Young, C., Klocke, B.J., Tenkova, T., Choi, J., Labruyere, J., Qin, Y.Q., Holtzman, D.M., Roth, K.A., and Olney, J.W. (2003). Ethanol-induced neuronal apoptosis in vivo requires BAX in the developing mouse brain. Cell Death Differ. 10 1148-1155. [Pg.280]

S.L. Bologa, H.P. Siegrist, A. Z graggen, K. Hofmann, D. Weismann, D. Dahl and N. Herschkowitz, Expression of antigenic markers during the development of oligodendrocytes in mouse brain cell cultures. Brain Res. 210 217 (198l). [Pg.128]

Tate, M. C., Shear, D. A., Hoffman, S. W., Stein, D. G., Archer, D. R., and Laplaca, M. C. 2002. Fibronectin promotes survival and migration of primary neural stem cells transplanted into the traumaticaUy injured mouse brain. Cell Transplant, 11 283-95. [Pg.677]

Tamplin et. al. (54) observed that V. cholerae and A. hydrophila cell extracts contained substances with TTX-like biological activity in tissue culture assay, counteracting the lethal effect of veratridine on ouabain-treated mouse neuroblastoma cells. Concentrations of TTX-like activity ranged from 5 to 100 ng/L of culture when compared to standard TTX. The same bacterial extracts also displaced radiolabelled STX from rat brain membrane sodium channel receptors and inhibited the compound action potential of frog sciatic nerve. However, the same extracts did not show TTX-like blocking events of sodium current when applied to rat sarcolemmal sodium channels in planar lipid bilayers. [Pg.82]

CTx that has been purified from muscles of Gymnothorax javanicus stimulates the release of neurotransmitters such as 7-aminobutyric acid and dopamine from rat brain nerve terminals. It causes a membrane depolarization of mouse neuroblastoma cells and, under appropriate conditions, it creates spontaneous oscillations of... [Pg.194]

Tran PB, Ren D, Veldhouse TJ, Miller RJ (2004) Chemokine receptors are expressed widely by embryonic and adult neural progenitor cells. J Neurosci Res 76 20-34 Tran PB, Banisadr G, Ren D, Chenn A, Miller RJ (2007) Chemokine receptor expression by neural progenitor cells in neurogenic regions of mouse brain. J Comp Neurol 500 1007-1033 U eyler N, Sommer C (2008) Cytokine regulation in animal models of neuropathic pain and in human diseases. Neurosci Lett 437 194-198... [Pg.219]

Schwanzel-Fukuda M., Reinhard G.R., Abraham S., Crossin K.L., et al. (1994). Antibody to neural cell adhesion molecule can disrupt the migration of luteinizing hormone-releasing hormone neurons into the mouse brain. J Comp Neurol 342, 174-185. [Pg.246]

Examples using KC1 that require desalting include the identification of the human saliva proteome (Wilmarth et al., 2004), the B. infantis proteome (Vitali et al., 2005), phosphoproteins from HeLa cells (Beausoleil et al., 2004), and phosphoproteins from mouse brain (Ballif et al., 2004). One of the important points to consider is that... [Pg.246]

DePaoli A, Hurley K, Yasuda K, Reisine T, Bell GI. Distribution of kappa opioid receptor mRNA in adult mouse brain An in situ hybridization histochemistry study. Mol Cell Neurobiol 1994 5 327-335. [Pg.483]

Kopen, G. C., Prockop, D. J. and Phinney, D. G. Marrow stromal cells migrate throughout forebrain and cerebellum, and they differentiate into astrocytes after injection into neonatal mouse brains. Proc. Natl Acad. Sci. U.S.A. 96 10711-10716,1999. [Pg.515]

Yandava, B. D., Billinghurst, L. L. and Snyder, E. Y. Global cell replacement is feasible via neural stem cell transplantation evidence from the dysmyelinated shiverer mouse brain. Proc. Natl Acad. Sci. U.S.A. 96 7029-7034,1999. [Pg.516]

The toxicity of C60 has been found to be related to its ability to cause oxidative stress (Oberdorster, 2004 and Sayes et al., 2005, 2007). However, literature describing the toxicity of C60 is contradictoiy. The first report on C60 cytotoxicity originated from Tsuchiya et al. who found that C60 inhibited cell proliferation and differentiation dose-dependently in mouse midbrain cells treated at -400 pg/ml for six days. Tsuchiya et al. proposed that reactive oxygen species (ROS) contributed to C60 cytotoxicity. The ROS generation and embryo head abnormalities suggested that C60 may contribute to brain and neuronal diseases such as Down syndrome, Alzheimer s, and Parkinson s disease (Tsuchaiya, 1996). The research that... [Pg.268]

A cell line is a continuously growing cell population, which is derived from tumor cells or from primary cells, which have been immortalized using appropriate vectors. There are several lines of blood-brain barrier endothelial cells available, for example, MBECs (mouse brain endothelial cells), RBE4 cells (rat brain endothelial cells, clone 4), PBMECs (porcine brain microvessel... [Pg.409]

Omidi Y, Campbell L, Barar J, Connell D, Akhtar S, Gumbleton M (2003) Evaluation of the immortalised mouse brain capillary endothelial cell line, b.End3, as an in vitro blood-brain barrier model for drug uptake and transport studies. Brain Res 990 95-112... [Pg.413]

Rietze RL, Valcanis H, Brooker GF, Thomas T, Voss AK, et al. 2001. Purification ofa pluripotent neural stem cell from the adult mouse brain. Nature 412 736-739. [Pg.320]


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See also in sourсe #XX -- [ Pg.306 , Pg.308 , Pg.311 ]




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