Opioid growth factor arrests the progression of clinical disease and spinal cord pathology in established experimental autoimmune encephalomyelitis

被引:28
作者
Campbell, Anna M. [1 ]
Zagon, Ian S. [1 ]
McLaughlin, Patricia J. [1 ]
机构
[1] Penn State Univ, Coll Med, Dept Neural & Behav Sci, Hershey, PA 17033 USA
关键词
Multiple sclerosis; Astroctyes; Proliferation; Opioid growth factor; Opioid growth factor receptor; MOG-induced disease; Behavior; CENTRAL-NERVOUS-SYSTEM; MULTIPLE-SCLEROSIS; FACTOR RECEPTOR; CELL-PROLIFERATION; AXONAL DAMAGE; RAT-BRAIN; MICE; MODEL; INFLAMMATION; MECHANISMS;
D O I
10.1016/j.brainres.2012.07.006
中图分类号
Q189 [神经科学];
学科分类号
071006 [神经生物学];
摘要
An endogenous neuropeptide, opioid growth factor (OGF), chemically termed [Met(5)]-enkephalin, arrested the progression of established disease in a mouse model of multiple sclerosis (MS) called experimental autoimmune encephalomyelitis (EAE). This study treated mice who demonstrated 2 consecutive days of behavioral decline following injections of myelin oligodendrocyte glycoprotein (MOG) with daily injections of OGF (10 mg/kg) or saline (0.1 ml) for 40 days. Within 6 days of OGF treatment, mice initially demonstrating clinical signs of EAE had significant reductions (45% reduction) in their behavioral scores relative to EAE mice receiving saline. Behavior was attenuated for the entire 40-day period with mice receiving OGF showing only limp tails and wobbly gait in comparison to saline-treated EAE mice who displayed paralysis of one or more limbs. Neuropathological studies revealed that OGF treatment initiated after the appearance of disease reduced the number of activated astrocytes and damaged neurons, decreased demyelination, and inhibited T cell proliferation. These results demonstrate that OGF can halt the progression of established EAE, return aberrant pain sensitivity to normal levels, inhibit proliferation of T cells and astrocytes, and prevent further spinal cord pathology. The data extend our observations that OGF given at the time of disease induction prevented disease onset, reduced the severity of clinical signs of disease, and reversed neurological deficits in a non-toxic manner. Our data substantiate the role of the OGF-OGFr axis in EAE and support the use of OGF as a biotherapy for MS. (C) 2012 Elsevier B.V. All rights reserved.
引用
收藏
页码:138 / 148
页数:11
相关论文
共 30 条
[1]
Glial fibrillary acidic protein: a potential biomarker for progression in multiple sclerosis [J].
Axelsson, M. ;
Malmestrom, C. ;
Nilsson, S. ;
Haghighi, S. ;
Rosengren, L. ;
Lycke, J. .
JOURNAL OF NEUROLOGY, 2011, 258 (05) :882-888
[2]
Enhanced visualization of axonopathy in EAE using thyl-YFP transgenic mice [J].
Bannerman, P. G. ;
Hahn, A. .
JOURNAL OF THE NEUROLOGICAL SCIENCES, 2007, 260 (1-2) :23-32
[3]
Astrogliosis in EAE spinal cord: Derivation from radial glia, and relationships to oligodendroglia [J].
Bannerman, Peter ;
Hahn, Ashleigh ;
Soulika, Athena ;
Gallo, Vittorio ;
Pleasure, David .
GLIA, 2007, 55 (01) :57-64
[4]
Update on Inflammation, Neurodegeneration, and Immunoregulation in Multiple Sclerosis: Therapeutic Implications [J].
Bennett, Jeffrey L. ;
Stuve, Olaf .
CLINICAL NEUROPHARMACOLOGY, 2009, 32 (03) :121-132
[5]
Regulation of cell proliferation by the opioid growth factor receptor is dependent on karyopherin β and Ran for nucleocytoplasmic trafficking [J].
Cheng, Fan ;
McLaughlin, Patricia J. ;
Zagon, Ian S. .
EXPERIMENTAL BIOLOGY AND MEDICINE, 2010, 235 (09) :1093-1101
[6]
Internalization of the opioid growth factor, [Met5]-enkephalin, is dependent on clathrin-mediated endocytosis for downregulation of cell proliferation [J].
Cheng, Fan ;
McLaughlin, Patricia J. ;
Banks, William A. ;
Zagon, Ian S. .
AMERICAN JOURNAL OF PHYSIOLOGY-REGULATORY INTEGRATIVE AND COMPARATIVE PHYSIOLOGY, 2010, 299 (03) :R774-R785
[7]
Dependence on Nuclear Localization Signals of the Opioid Growth Factor Receptor in the Regulation of Cell Proliferation [J].
Cheng, Fan ;
McLaughlin, Patricia J. ;
Verderame, Michael F. ;
Zagon, Ian S. .
EXPERIMENTAL BIOLOGY AND MEDICINE, 2009, 234 (05) :532-541
[8]
The OGF-OGFr Axis Utilizes the p16INK4a and p21WAF1/CIP1 Pathways to Restrict Normal Cell Proliferation [J].
Cheng, Fan ;
McLaughlin, Patricia J. ;
Verderame, Michael F. ;
Zagon, Ian S. .
MOLECULAR BIOLOGY OF THE CELL, 2009, 20 (01) :319-327
[9]
Mechanisms of Primary Axonal Damage in a Viral Model of Multiple Sclerosis [J].
Das Sarma, Jayasri ;
Kenyon, Lawrence C. ;
Hingley, Susan T. ;
Shindler, Kenneth S. .
JOURNAL OF NEUROSCIENCE, 2009, 29 (33) :10272-10280
[10]
Low-dose naltrexone targets the opioid growth factor-opioid growth factor receptor pathway to inhibit cell proliferation: mechanistic evidence from a tissue culture model [J].
Donahue, Renee N. ;
McLaughlin, Patricia J. ;
Zagon, Ian S. .
EXPERIMENTAL BIOLOGY AND MEDICINE, 2011, 236 (09) :1036-1050