Therapeutic neutralization of CXCL10 decreases secondary degeneration and functional deficit after spinal cord injury in mice

Author:

Gonzalez Rafael1,Hickey Michelle J2,Espinosa Julio M1,Nistor Gabriel1,Lane Thomas E2,Keirstead Hans S1

Affiliation:

1. University of California, Reeve Irvine Research Center, Department of Anatomy and Neurobiology, 2111 Gillespie Neuroscience Research Facility, College of Medicine, Irvine, 92697-4292, CA, USA.

2. University of California, Center for Immunology, Department of Molecular Biology and Biochemistry, Irvine, 2238 McGaugh Hall, Irvine, 92697-3900CA, USA

Abstract

Inflammation plays a critical role in the secondary degenerative response to spinal cord injury (SCI). The influx of inflammatory cells following SCI is preceded by the expression of specific chemoattractants, including chemokines. The chemokine CXCL10 is a potent T lymphocyte recruiter and has been strongly implicated in the pathology of many CNS disorders. We have previously demonstrated that CXCL10 exacerbates secondary degeneration by blocking the function of CXCL10 prior to SCI. Here we administered neutralizing antibodies against CXCL10 1 h after SCI in order to investigate the efficacy of this therapeutic intervention in abating histologic and functional deficit following acute SCI and further assess the functional role of CXCL10 in secondary degeneration. Neutralization of CXCL10 significantly reduced inflammation, apoptosis, neuronal loss and whole tissue loss. Notably, this therapeutic treatment also promoted revascularization of the injured spinal cord and functional recovery. These data suggest that anti-CXCL10 antibody treatment is a viable therapeutic strategy for acute SCI.

Publisher

Future Medicine Ltd

Subject

Embryology,Biomedical Engineering

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