Molecular Control of Physiological and Pathological T-Cell Recruitment after Mouse Spinal Cord Injury
Open Access
- 13 July 2005
- journal article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 25 (28) , 6576-6583
- https://doi.org/10.1523/jneurosci.0305-05.2005
Abstract
The intraspinal cues that orchestrate T-cell migration and activation after spinal contusion injury were characterized using B10.PL (wild-type) and transgenic (Tg) mice with a T-cell repertoire biased toward recognition of myelin basic protein (MBP). Previously, we showed that these strains exhibit distinct anatomical and behavioral phenotypes. In Tg mice, MBP-reactive T-cells are activated by spinal cord injury (SCI), causing more severe axonal injury, demyelination, and functional impairment than is found in non-Tg wild-type mice (B10.PL). Conversely, despite a robust SCI-induced T-cell response in B10.PL mice, no overt T-cell-mediated pathology was evident. Here, we show that chronic intraspinal T-cell accumulation in B10.PL and Tg mice is associated with a dramatic and sustained increase in CXCL10/IP-10 and CCL5/RANTES mRNA expression. However, in Tg mice, chemokine mRNA were enhanced 2- to 17-fold higher than in B10.PL mice and were associated with accelerated intraspinal T-cell influx and enhanced CNS macrophage activation throughout the spinal cord. These data suggest common molecular pathways for initiating T-cell responses after SCI in mice; however, if T-cell reactions are biased against MBP, molecular and cellular determinants of neuroinflammation are magnified in parallel with exacerbation of neuropathology and functional impairment.Keywords
This publication has 59 references indexed in Scilit:
- Enhanced axonal growth into a spinal cord contusion injury site in a strain of mouse (129X1/SvJ) with a diminished inflammatory responseJournal of Comparative Neurology, 2004
- Passive or Active Immunization with Myelin Basic Protein Impairs Neurological Function and Exacerbates Neuropathology after Spinal Cord Injury in RatsJournal of Neuroscience, 2004
- The Activation Status of Neuroantigen-specific T Cells in the Target Organ Determines the Clinical Outcome of Autoimmune EncephalomyelitisThe Journal of Experimental Medicine, 2004
- Ascending sensory, but not other long‐tract axons, regenerate into the connective tissue matrix that forms at the site of a spinal cord injury in miceJournal of Comparative Neurology, 2003
- Presence of B7–2 (CD86) and lack of B7–1 (CD(80) on myelin phagocytosing MHC-II-positive rat microglia is associated with nondestructive immunity in vivoThe FASEB Journal, 2001
- The Role of Chemokine Receptors in Primary, Effector, and Memory Immune ResponsesAnnual Review of Immunology, 2000
- Traumatic Spinal Cord Injury Produced by Controlled Contusion in MouseJournal of Neurotrauma, 2000
- Peripherally Administered Insulin-like Growth Factor-I Preserves Hindlimb Reflex and Spinal Cord Noradrenergic Circuitry Following a Central Nervous System Lesion in RatsExperimental Neurology, 1999
- Activation of Dual T Cell Signaling Pathways by the Chemokine RANTESScience, 1995
- The Effect of In Vivo T Helper and T Suppressor Lymphocyte Depletion on Wound HealingAnnals of Surgery, 1989