spacer gif spacer gif spacer gif spacer gif spacer gif
 QUICK SEARCH:   [advanced]


spacer gif
     Home     Help     Feedback     Subscriptions     Archive     Search     Table of Contents    

This Article
Right arrow Summary Freely available
Right arrow Full Text (PDF)
Right arrow Alert me when this article is cited
Right arrow Alert me if a correction is posted
Services
Right arrow Email this article to a friend
Right arrow Similar articles in this journal
Right arrow Similar articles in PubMed
Right arrow Alert me to new issues of the journal
Right arrow Download to citation manager
Right arrow reprints & permissions
Citing Articles
Right arrow Citing Articles via HighWire
Right arrow Citing Articles via Google Scholar
Google Scholar
Right arrow Articles by Leskovar, A.
Right arrow Articles by Borgens, R. B.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Leskovar, A.
Right arrow Articles by Borgens, R. B.
Avellino, A. M., Hart, D., Dailey, A. T., Mackinnon, M., Ellegala, D. and Kliot, M (1995). Differential macrophage responses in the peripheral and central nervous system during Wallerian degeneration of axons. Exp. Neurol 136, 183-.[Medline]

Barone, F. C., Arvin, B., White, R. F., Miller, A., Webb, C. L., Willette, R. N., Lysko, P. G. and Feuerstein, G. Z (1997). Tumor necrosis factor-: a mediator of focal ischemic brain injury. Stroke 28, 1233-.[Abstract/Free Full Text]

Blight, A. R (1985). Delayed demyelination and macrophage invasion: A candidate for secondary cell damage in spinal cord injury. Central Nervous System Trauma 2, 299-.[Medline]

Blight, A. R (1992). Macrophages and inflammatory damage in spinal cord injury. J. Neurotraum 9, 83-.

Blight, A. R (1994). Effects of silica on the outcome from experimental spinal cord injury: Implication of macrophages in secondary tissue damage. Neuroscience 60, 263-.[Medline]

Carlson, S. L., Parrish, M. E., Springer, J. E., Doty, K. and Dossett, L (1998). Acute inflammatory response in spinal cord following impact injury. Exp. Neurol 151, 77-.[Medline]

Damoiseaux, J. G. M. C., Dopp, E. A., Calame, W., Choa, D., MacPherson, G. G. and Dijkstra, C. D (1994). Rat macrophage lysosomal membrane antigen recognized by monoclonal antibody ED1. Immunology 83, 140-.[Medline]

David, S., Bouchard, C., Tsatas, O. and Giftochristos, N (1990). Macrophages can modify the nonpermissive nature of the adult mammalian central nervous system. Neuron 5, 463-.[Medline]

DiPietro, L. A (1995). Wound healing: the role of the macrophage and other immune cells. Shock 4, 233-.[Medline]

Downs, T. R. and Wilfinger, W. W (1983). Fluorometric quantitation of DNA in cells and tissues. Analyt. Biochem 131, 538-.[Medline]

Franzen, R., Schoenen, J., Leprince, P., Joosten, E., Moonen, G. and Martin, D (1998). Effects of macrophage transplantation in the injured adult rat spinal cord: A combined immunocytochemical and biochemical study. J. Neurosci. Res 51, 316-.[Medline]

Fujita, T., Yoshimine, T., Maruno, M. and Hayakawa, T (1998). Cellular dynamics of macrophages and microglial cells in reaction to stab wounds in rat cerebral cortex. Acta Neurochir 140, 275-.[Medline]

George, R. and Griffin, J. W (1994). Delayed macrophage responses and myelin clearance during Wallerian degeneration in the central nervous system: the dorsal radiculotomy model. Exp. Neurol 129, 225-.[Medline]

Giulian, D., Chen, J., Ingeman, J., George, J. K. and Noponen, M (1989). The role of mononuclear phagocytes in wound healing after traumatic injury to adult mammalian brain. J. Neurosci 9, 4416-.[Abstract]

Giulian, D. and Robertson, C (1990). Inhibition of mononuclear phagocytes reduces ischemic injury in the spinal cord. Ann. Neurol 27, 33-.[Medline]

Gordon, S (1995). The macrophage. BioEssays 17, 977-.[Medline]

Griffin, J. W. and George, R (1993). The resident macrophages in the peripheral nervous system are renewed from the bone marrow: new variations on an old theme. Lab. Invest 69, 257-.[Medline]

Hagberg, H., Gilland, E., Bona, E., Hanson, L. A., Hahn-Zoric, M., Blennow, M., Holst, M., McRae, A. and Soder, O (1996). Enhanced expression of interleukin IL-1 and IL-6 messenger RNA and bioactive protein after hypoxia-ischemia in neonatal rats. Pediat. Res 40, 603-.[Medline]

Hansen, M. B., Nielsen, S. E. and Berg, K (1989). Re-examination and further development of a precise and rapid dye method for measuring cell growth/cell kill. J. Immunol. Meth 119, 203-.[Medline]

Hatten, M. E., Liem, R. K. H., Shelanski, M. L. and Mason, C. A (1991). Astroglia in CNS injury. Glia 4, 233-.[Medline]

Holmin, S., Schalling, M., Hojeberg, B., Sandberg Nordquist, A. C., Skeftruna, A. K. and Mathiesen, T (1997). Delayed cytokine expression in rat brain following experimental contusion. J. Neurosurg 86, 493-.[Medline]

Jacobs, C. A., Baker, P. E., Roux, E. R., Picha, K. S., Toivola, B., Waugh, S. and Kennedy, M. K (1991). Experimental autoimmune encephalomyelitis is exacerbated by IL-1a and suppressed by soluble IL-1 receptor. J. Immunol 146, 2983-.[Abstract]

Karavodin, L. M., Glasebrook, A. L. and Phelps, J. L (1989). Decline in growth and antibody production of established hybridomas and transfectomas with addition of interleukin 6. Eur. J. Immunol 19, 1351-.[Medline]

Kiernan, J. A (1979). Hypotheses concerned with axonal regeneration in the mammalian nervous system. Biol. Rev 54, 153-.

Kim, J. S (1996). Cytokines and adhesion molecules in stroke and related diseases. J. Neurol. Sci 137, 69-.[Medline]

Kirsner, R. B. and Eaglstein, W. H (1993). The wound healing process. Dermatol. Clinics 11, 629-.[Medline]

Klusman, I. and Schwab, M. E (1997). Effects of pro-inflammatory cytokines in experimental spinal cord injury. Brain Res 762, 173-.[Medline]

Lawson, L. J., Frost, L., Risbridger, J., Fearn, S. and Perry, V. H (1994). Quantification of the mononuclear phagocyte response to Wallerian degeneration of the optic nerve. J. Neurocytol 23, 729-.[Medline]

Lazarov-Spiegler, O., Solomon, A. S., Zeev-Brann, A. B., Hirschberg, D. L., Lavie, V. and Schwartz, M (1996). Transplantaion of activated macrophages overcomes central nervous system regrowth failure. FASEB J 10, 1296-.[Abstract]

Ling, E. A (1978). Electron microscopic studies of macrophages in Wallerian degeneration of rat optic nerve after intravenous injection of colloidal carbon. J. Anat 126, 111-.[Medline]

Ling, E. A., Penney, D. and Leblond, C. P (1980). Use of carbon labeling to demonstrate the role of blood monocytes as precursors of the \324ameboid cells' present in the corpus callosum of postnatal rats. J. Comp. Neurol 193, 631-.[Medline]

Liuzzi, F. J. and Lasek, R. J (1987). Astrocytes block axonal regeneration in mammals by activating the physiological stop pathway. Science 237, 642-.[Abstract/Free Full Text]

Lotan, M., Solomon, A., Ben-Bassat, S. and Schwartz, M (1994). Cytokines modulate the inflammatory response and change permissiveness to neuronal adhesion in injured mammalian central nervous system. Exp. Neurol 126, 284-.[Medline]

Lotan, M. and Schwartz, M (1994). Cross talk between the immune system and the nervous system in response to injury: implications for regeneration. FASEB J 8, 1026-.[Abstract]

Lunn, E. R., Perry, V. H., Brown, M. C., Rosen, H. and Gordon, S (1989). Absence of Wallerian degeneration does not hinder regeneration in peripheral nerve. Eur. J. Neurosci 1, 27-.[Medline]

Minami, M., Kuraishi, Y., Yabuuchi, K., Yamazaki, A. and Satoh, M (1992). Induction of interleukin-1mRNA in rat brain after transient forebrain ischemia. J. Neurochem 58, 390-.[Medline]

Miyake, T., Tsuchihashi, Y., Kitamura, T. and Fujita, S (1984). Immunohistochemical studies of blood monocytes infiltrating into the neonatal rat brain. Acta Neuropathol 62, 291-.[Medline]

Monaco, S., Gehrmann, J., Raivich, G. and Kreutzberg, G. W (1992). MHC-positive, ramified macrophages in the normal and injured rat peripheral nervous system. J. Neurocytol 21, 623-.[Medline]

Moriarty, L. J., Duerstock, B. S., Bajaj, C. L., Lin, K and Borgens, R. B (1998). Two and three dimensional computer graphic evaluation of the subacute spinal cord injury. J. Neurol. Sci 155, 121-.[Medline]

Mosmann, T (1983). Rapid colorimetric assay for cellular growth and cytotoxicity assays. J. Immunol. Meth 65, 55-.[Medline]

Nawashiro, H., Martin, D. and Hallenbeck, J. M (1997). Inhibition of tumor necrosis factor and amelioration of brain infarction in mice. J. Cereb. Blood Flow Metab 17, 229-.[Medline]

Perry, V. H., Andersson, P. B. and Gordon, S (1993). Macrophages and inflammation in the central nervous system. Trends Neurosci 16, 268-.[Medline]

Perry, V. H. and Brown, M. C (1992). Macrophages and nerve regeneration. Curr. Opin. Neurobiol 2, 679-.[Medline]

Perry, V. H., Brown, M. C. and Gordon, S (1987). The macrophage response to central and peripheral nerve injury: a possible role for macrophages in regeneration. J. Exp. Med 165, 1218-.[Abstract/Free Full Text]

Perry, V. H. and Gordon, S (1988). Macrophages and microglia in the nervous system. Trends Neurosci 11, 273-.[Medline]

Perry, V. H. and Gordon, S (1991). Macrophages and the nervous system. Int. Rev. Cytol 125, 203-.[Medline]

Prewitt, C. M. F., Niesman, I. R., Kane, C. J. M. and Houle, J. D (1997). Activated macrophage/microglial cells can promote the regeneration of sensory axons into the injured spinal cord. Exp. Neurol 148, 433-.[Medline]

Reichert, F., Levitzky, R. and Rotshenker, S (1996). Interleukin 6 in intact and injured mouse peripheral nerves. Eur. J. Neurosci 8, 530-.[Medline]

Relton, J. K., Martin, D., Thompson, R. C. and Russell, D. A (1996). Peripheral administration of interleukin-1 receptor antagonist inhibits brain damage after focal cerebral ischemia in the rat. Exp. Neurol 138, 206-.[Medline]

Rothwell, N. J. and Relton, J. K (1993). Involvement of interleukin-1 and lipocortin-1 in ischemic brain damage. Cerebrovasc. Brain Metab. Rev 5, 178-.[Medline]

Rotshenker, S., Aamar, S. and Barak, V (1991). Interleukin-1 activity in lesioned peripheral nerve. J. Neuroimmunol 39, 75-.

Schindler, R., Mancilla, J., Endres, S., Ghorbani, R., Vlark, S. C. and Dinarello, C. A (1990). Correlations and interactions in the production of interleukin-6 (IL-6), IL-1 and tumor necrosis factor (TNF) in human blood mononuclear cells: IL-6 suppresses IL-1 and TNF. Blood 75, 40-.[Abstract/Free Full Text]

Schnell, L., Fearn, S., Schwab, M. E., Perry, V. H. and Anthony, D. C (1999). Cytokine-induced acute inflammation in the brain and spinal cord. J. Neuropath. Exp. Neurol 58, 245-.[Medline]

Schwab, M. E., Kapfhammer, J. P. and Bandtlow, C. E (1993). Inhibitors of neurite growth. Annu. Rev. Neurosci 16, 565-.[Medline]

Schwartz, M., Lazarov-Spiegler, O., Rapalino, O., Agranov, I., Velan, G. and Hadani, M (1999). Potential repair of rat spinal cord injuries using stimulated homologous macrophages. Neurosurgery 44, 1041-.[Medline]

Shohami, E., Novikov, M., Bass, R., Yamin, A. and Gallily, R (1994). Closed head injury triggers early production of TNFand IL-6 by brain tissue. J. Cerebr. Blood Flow Metab 14, 615-.[Medline]

Tator, C. H. and Fehlings, M. G (1991). Review of the secondaryinjury theory of acute spinal cord trauma with emphasis on vascular mechanisms. J. Neurosurg 75, 15-.[Medline]

Taupin, V., Toulmond, S., Serrano, A., Benavides, J. and Zavala, F (1993). Increase in IL-6, IL-1 and TNF levels in rat brain following traumatic lesion. J. Neuroimmunol 42, 177-.[Medline]

Toulmond, S., Vige, X., Fage, D. and Benavides, J (1992). Local infusion of interleukin-6 attenuates the neurotoxic effects of NMDA on rat striatal cholinergic neurons. Neurosci. Lett 144, 49-.[Medline]

Turek, J. J., Schoenlein, I. A. and Bottoms, G. D (1991). The effect of dietary n-3 and n-6 fatty acids on tumor necrosis factor-alpha production and leucine aminopeptidase levels in rat peritoneal macrophages. Prostaglandins Leukot. Essent. Fatty Acids 43, 141-.[Medline]

Turek, J. J., Schoenlein, I. A., Watkins, B. A., Van Alstine, W. G., Clark, L. K. and Knox, K (1996). Dietary polyunsaturated fatty acids modulate responses of pigs to Mycoplasma hyopneumoniae infection. J. Nutr 126, 1541-.

Yamasaki, Y., Matsuura, N., Shozuhara, H., Onodera, H., Itoyama, Y. and Kogure, K (1995). Interleukin-1 as a pathogenetic mediator of ischemic brain damage in rats. Stroke 26, 676-.[Abstract/Free Full Text]

Zeev-Brann, A. B., Lazarov-Spiegler, O., Brenner, T. and Schwartz, M (1998). Differential effects of central and peripheral nerves on macrophages and microglia. Glia 23, 181-.[Medline]




This article has been cited by other articles:


Home page
J. Neurosci.Home page
M. Hashimoto, D. Sun, S. R. Rittling, D. T. Denhardt, and W. Young
Osteopontin-Deficient Mice Exhibit Less Inflammation, Greater Tissue Damage, and Impaired Locomotor Recovery from Spinal Cord Injury Compared with Wild-Type Controls
J. Neurosci., March 28, 2007; 27(13): 3603 - 3611.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
K. Namikawa, T. Okamoto, A. Suzuki, H. Konishi, and H. Kiyama
Pancreatitis-associated protein-III is a novel macrophage chemoattractant implicated in nerve regeneration.
J. Neurosci., July 12, 2006; 26(28): 7460 - 7467.
[Abstract] [Full Text] [PDF]


Home page
BrainHome page
F. E. Perrin, S. Lacroix, M. Aviles-Trigueros, and S. David
Involvement of monocyte chemoattractant protein-1, macrophage inflammatory protein-1{alpha} and interleukin-1{beta} in Wallerian degeneration
Brain, April 1, 2005; 128(4): 854 - 866.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
M. J. Velardo, C. Burger, P. R. Williams, H. V. Baker, M. C. Lopez, T. H. Mareci, T. E. White, N. Muzyczka, and P. J. Reier
Patterns of Gene Expression Reveal a Temporally Orchestrated Wound Healing Response in the Injured Spinal Cord
J. Neurosci., September 29, 2004; 24(39): 8562 - 8576.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
D. Gris, D. R. Marsh, M. A. Oatway, Y. Chen, E. F. Hamilton, G. A. Dekaban, and L. C. Weaver
Transient Blockade of the CD11d/CD18 Integrin Reduces Secondary Damage after Spinal Cord Injury, Improving Sensory, Autonomic, and Motor Function
J. Neurosci., April 21, 2004; 24(16): 4043 - 4051.
[Abstract] [Full Text] [PDF]


Home page
J. Neurosci.Home page
Y. Yin, Q. Cui, Y. Li, N. Irwin, D. Fischer, A. R. Harvey, and L. I. Benowitz
Macrophage-Derived Factors Stimulate Optic Nerve Regeneration
J. Neurosci., March 15, 2003; 23(6): 2284 - 2293.
[Abstract] [Full Text] [PDF]


Home page
Physiol. Rev.Home page
L. R. Watkins and S. F. Maier
Beyond Neurons: Evidence That Immune and Glial Cells Contribute to Pathological Pain States
Physiol Rev, October 1, 2002; 82(4): 981 - 1011.
[Abstract] [Full Text] [PDF]


Home page
J. Exp. Biol.Home page
B. S. Duerstock and R. B. Borgens
Three-dimensional morphometry of spinal cord injury following polyethylene glycol treatment
J. Exp. Biol., January 1, 2002; 205(1): 13 - 24.
[Abstract] [Full Text] [PDF]


Home page
J. Leukoc. Biol.Home page
M. Crowther, N. J. Brown, E. T. Bishop, and C. E. Lewis
Microenvironmental influence on macrophage regulation of angiogenesis in wounds and malignant tumors
J. Leukoc. Biol., October 1, 2001; 70(4): 478 - 490.
[Abstract] [Full Text] [PDF]


This Article
Right arrow Summary Freely available
Right arrow Full Text (PDF)
Right arrow Alert me when this article is cited
Right arrow Alert me if a correction is posted
Services
Right arrow Email this article to a friend
Right arrow Similar articles in this journal
Right arrow Similar articles in PubMed
Right arrow Alert me to new issues of the journal
Right arrow Download to citation manager
Right arrow reprints & permissions
Citing Articles
Right arrow Citing Articles via HighWire
Right arrow Citing Articles via Google Scholar
Google Scholar
Right arrow Articles by Leskovar, A.
Right arrow Articles by Borgens, R. B.
Right arrow Search for Related Content
PubMed
Right arrow PubMed Citation
Right arrow Articles by Leskovar, A.
Right arrow Articles by Borgens, R. B.