Lipopolysaccharide pre-treatment induces resistance against subsequent focal cerebral ischemic damage in spontaneously hypertensive rats
Tài liệu tham khảo
Breder, C.D., Hazuka, C., Ghayur, T., Klug, C., Huginin, M., Yasuda, K., Teng, M. and Saper, C.B., Regional induction of tumor necrosis factor α expression in the mouse brain after systemic lipopolysaccharide administration, Proc. Natl. Acad. Sci. USA, 91 (1994) 11393–11397.
Brint, S., Jacewicz, M., Kiessling, M., Tanabe, J. and Pulsinelli, W., Focal brain ischemia in the rat: methods for reproducible neocortical infarction using tandem occlusion of the distal middle cerebral and ipsilateral common carotid arteries, J. Cereb. Blood Flow Metab., 8 (1988) 474–485.
Claudio, E., Segade, F., Wrobel, K., Ramos, S., Bravo, R. and Lazo, P.S., Molecular mechanisms of TNF-α cytotoxicity: activation of NF-κB and nuclear translocation, Exp. Cell Res., 224 (1996) 63–71.
Dutka, A.J. and Broome, J. Spontaneously hypertensive rats (SHR) tolerant to endotoxin do not develop decompression illness, Undersea Hyperbaric Med., 21 (Suppl.) (1994) 92–93.
Eddy, L.J., Goeddel, D.V. and Wong, G.H.W., Tumor necrosis factor-α pretreatment is protective in a rat model of myocardial ischemia-reperfusion injury, Biochem. Biophys. Res. Commun., 184 (1992) 1056–1059.
Garcia, J.H., Liu, K.-F. and Relton, J.K., Interleukin-1 receptor antagonist decreases the number of necrotic neurons in rats with middle cerebral artery occlusion, Am. J. Pathol., 147 (1995) 1477–1486.
Gutierrez, E.G., Banks, W.A. and Kastin, A.J., Murine tumor necrosis factor alpha is transported from blood to brain in the mouse, J. Neuroimmunol., 47 (1993) 169–176.
Hogan, M.M. and Vogel, S.N., Production of tumor necrosis factor by rIFN-γ-primed C3H/HeJ (LPSd) macrophages requires the presence of lipid A-associated proteins, J. Immunol., 141 (1988) 4196–4202.
Isayama, K., Pitts, L.H. and Nishimura, M.C., Evaluation of 2,3,5-triphenyltetrazolium chloride staining to delineate rat brain infarcts, Stroke, 22 (1991) 1394–1398.
Kyriakis, J.M., Banerjee, P., Nikolakaki, E., Dai, T., Rubie, E.A., Ahmad, M.F., Avruch, J. and Woodgett, J.R., The stress-activated protein kinase subfamily of c-jun kinases, Nature, 369 (1994) 156–160.
Layé, S., Parnet, P., Goujon, E. and Dantzer, R., Peripheral administration of lipopolysaccharide induces the expression of cytokine transcripts in the brain and pituitary of mice, Mol. Brain. Res., 27 (1994) 157–162.
Martin, D., Chinookoswong, N. and Millfer, G., The interleukin-1 antagonist (rhIL-1ra) protects against cerebral infarction in a rat model of hypoxia-ischemia, Exp. Neurol., 130 (1994) 362–367.
Martin, D., Near, S.L., Bendele, A. and Russell, D.A., Inhibition of tumor necrosis factor is protective against neurologic dysfunction after active immunization of Lewis rats with myelin basic protein, Exp. Neurol., 131 (1995) 221–228.
Pugin, J., Ulevitch, R.J. and Tobias, P.S., Tumor necrosis factor-α and interleukin-1β mediate human endothelial cell activation in blood at low endotoxin concentrations, J. Inflammat., 45 (1995) 49–55.
Sakaki, T., Yamada, K., Otsuki, H., Yuguchi, T., Kohmura, E. and Hayakawa, T., Brief exposure to hypoxia induces bFGF mRNA and protein and protects rat cortical neurons from prolonged hypoxic stress, Neurosci. Res., 23 (1995) 289–296.
Schöbitz, B., De Kloet, E.R. and Holsboer, F., Gene expression and function of Interleukin 1, interleukin 6 and tumor necrosis factor in the brain, Prog. Neurobiol., 44 (1994) 397–432.
Simon, R.P., Niiro, M. and Gwinn, R., Prior ischemic stress protects against experimental stroke, Neurosci. Lett., 163 (1993) 135–137.
Vilcek, J. and Lee, T.H., Tumor necrosis factor. New insights into the molecular mechanisms of its multiple actions, J. Biol. Chem., 266 (1991) 7313–7316.