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1.
Neuroscience ; 158(3): 1112-21, 2009 Feb 06.
Article in English | MEDLINE | ID: mdl-18674593

ABSTRACT

Traumatic spinal cord injury (SCI) in mammals causes widespread glial activation and recruitment to the CNS of innate (e.g. neutrophils, monocytes) and adaptive (e.g. T and B lymphocytes) immune cells. To date, most studies have sought to understand or manipulate the post-traumatic functions of astrocytes, microglia, neutrophils or monocytes. Significantly less is known about the consequences of SCI-induced lymphocyte activation. Yet, emerging data suggest that T and B cells are activated by SCI and play significant roles in shaping post-traumatic inflammation and downstream cascades of neurodegeneration and repair. Here, we provide neurobiologists with a timely review of the mechanisms and implications of SCI-induced lymphocyte activation, including a discussion of different experimental strategies that have been designed to manipulate lymphocyte function for therapeutic gain.


Subject(s)
Autoimmunity/immunology , Chemotaxis, Leukocyte/immunology , Lymphocytes/immunology , Myelitis/immunology , Neuroimmunomodulation/immunology , Spinal Cord Injuries/immunology , Adaptation, Physiological/immunology , Animals , Humans , Lymphocyte Activation/immunology , Myelitis/physiopathology , Nerve Degeneration/immunology , Nerve Degeneration/physiopathology , Nerve Regeneration/immunology , Spinal Cord Injuries/physiopathology
2.
Exp Neurol ; 170(1): 85-100, 2001 Jul.
Article in English | MEDLINE | ID: mdl-11421586

ABSTRACT

The neurotrophin brain-derived neurotrophic factor (BDNF) shows promise for the treatment of central nervous system (CNS) trauma and disease. Effective delivery methods are required, however, for BDNF to be useful as a therapeutic agent. To this end, we examined the penetration of intrathecally infused N-terminal pegylated BDNF (peg-BDNF) compared to similar infusion of native BDNF after spinal cord injury (SCI). Pegylation dramatically improved delivery of BDNF to the spinal cord and induced the expression of Fos in spinal cord neurons. To test whether enhanced delivery would improve the modest effects on behavioral recovery and axonal outgrowth observed with native BDNF infusion, we assessed the efficacy of 2-week 25 microg/day peg-BDNF treatment, beginning 12-24 h (early) or 15 days (delayed) after midthoracic spinal contusion. Similar to native BDNF, early treatment with peg-BDNF accelerated the recovery of stepping in the open-field and acutely stimulated locomotor central pattern generator activity, as seen by the activation of hindlimb airstepping during either period of administration. The infusion of peg-BDNF, regardless of the timing of delivery, was related to enhanced sprouting of putative cholinergic fibers, like that observed after high dose native BDNF treatment. Despite improved delivery, however, neither axonal responses nor the extent of locomotor recovery were enhanced compared to native BDNF treatment. This suggests that alternative strategies, such as neurotrophin treatment in conjunction with cell transplantation techniques, or treatment nearer the cell bodies of target neurons might be employed in an attempt to effect significant repair after SCI.


Subject(s)
Brain-Derived Neurotrophic Factor/pharmacokinetics , Motor Activity/drug effects , Polyethylene Glycols , Spinal Cord Injuries/drug therapy , Spinal Cord/drug effects , Animals , Axons/drug effects , Axons/pathology , Behavior, Animal/drug effects , Brain-Derived Neurotrophic Factor/administration & dosage , Brain-Derived Neurotrophic Factor/analogs & derivatives , Choline O-Acetyltransferase/metabolism , Dose-Response Relationship, Drug , Female , Hindlimb , Immunohistochemistry , Injections, Spinal , Polyethylene Glycols/chemistry , Rats , Recovery of Function/drug effects , Spinal Cord/metabolism , Spinal Cord/pathology , Spinal Cord Injuries/metabolism , Spinal Cord Injuries/pathology , Wounds, Nonpenetrating
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