Quinolinic acid accumulation in injured spinal cord: Time course, distribution, and species differences between rat and guinea pig

被引:35
作者
Blight, AR [1 ]
Leroy, EC [1 ]
Heyes, MP [1 ]
机构
[1] NIMH,LAB NEUROTOXICOL,BETHESDA,MD 20892
关键词
inflammation; macrophage; quinolinate; spinal trauma; somatosensory evoked potentials;
D O I
10.1089/neu.1997.14.89
中图分类号
R4 [临床医学];
学科分类号
1002 ; 100602 ;
摘要
Experimental compression injury of the spinal cord in guinea pigs results in delayed neurologic deficits that continue to increase in severity for several days following trauma, coincident with inflammatory responses, including invasion of the lesion by mononuclear phagocytes and increased levels of the neurotoxin quinolinic acid (QUIN). Inflammatory responses and QUIN elevation also occur following spinal cord contusion in rats, but maximal neurologic deficits develop immediately. In this study, somatosensory evoked potentials (SEP) and tissue, serum, and cerebrospinal fluid levels of QUIN were measured in guinea pigs and rats following similar compression injuries of the thoracic spinal cord. SEP changes differed between the species, consistent with other neurological changes. In guinea pigs, increases in QUIN levels at the lesion site began at 1 day postinjury, achieved maximal elevation (100-fold) by 12 days, then declined, but remained above serum levels at 25 days postinjury. A similar increase occurred in adjacent areas of the spinal cord, with lower peak levels. In rats, tissue QUIN at the center of the lesion remained below serum levels at all times, increasing moderately (<10-fold) up to 7 days, then decreasing between 7 and 25 days. These data demonstrate differences in the time course and magnitude of QUIN accumulation and neurological deficit between guinea pig and rat, which may relate to differences in secondary pathological mechanisms. Such profound differences may affect the use of these species for evaluation of experimental therapy in this and other inflammatory conditions of the central nervous system.
引用
收藏
页码:89 / 98
页数:10
相关论文
共 41 条
[1]   EFFECTS OF TREATMENT WITH U-74006F ON NEUROLOGICAL OUTCOME FOLLOWING EXPERIMENTAL SPINAL-CORD INJURY [J].
ANDERSON, DK ;
BRAUGHLER, JM ;
HALL, ED ;
WATERS, TR ;
MCCALL, JM ;
MEANS, ED .
JOURNAL OF NEUROSURGERY, 1988, 69 (04) :562-567
[2]   Pretreatment with Alpha Tocopherol Enhances Neurologic Recovery After Experimental Spinal Cord Compression Injury [J].
Anderson, Douglas K. ;
Waters, Thomas R. ;
Means, Eugene D. .
JOURNAL OF NEUROTRAUMA, 1988, 5 (01) :61-67
[3]   A COMPARISON OF YM-14673, U-50488H, AND NALMEFENE AFTER SPINAL-CORD INJURY IN THE RAT [J].
BEHRMANN, DL ;
BRESNAHAN, JC ;
BEATTIE, MS .
EXPERIMENTAL NEUROLOGY, 1993, 119 (02) :258-267
[4]   MODELING OF ACUTE SPINAL-CORD INJURY IN THE RAT - NEUROPROTECTION AND ENHANCED RECOVERY WITH METHYLPREDNISOLONE, U-74006F AND YM-14673 [J].
BEHRMANN, DL ;
BRESNAHAN, JC ;
BEATTIE, MS .
EXPERIMENTAL NEUROLOGY, 1994, 126 (01) :61-75
[5]  
BLIGHT AR, 1992, J NEUROTRAUM, V9, pS83
[6]   EFFECTS OF SILICA ON THE OUTCOME FROM EXPERIMENTAL SPINAL-INJURY - IMPLICATION OF MACROPHAGES IN SECONDARY TISSUE-DAMAGE [J].
BLIGHT, AR .
NEUROSCIENCE, 1994, 60 (01) :263-273
[7]   QUINOLINIC ACID ACCUMULATION AND FUNCTIONAL DEFICITS FOLLOWING EXPERIMENTAL SPINAL-CORD INJURY [J].
BLIGHT, AR ;
COHEN, TI ;
SAITO, K ;
HEYES, MP .
BRAIN, 1995, 118 :735-752
[8]   MORPHOMETRIC ANALYSIS OF A MODEL OF SPINAL-CORD INJURY IN GUINEA-PIGS, WITH BEHAVIORAL EVIDENCE OF DELAYED SECONDARY PATHOLOGY [J].
BLIGHT, AR .
JOURNAL OF THE NEUROLOGICAL SCIENCES, 1991, 103 (02) :156-171
[9]   MORPHOMETRIC ANALYSIS OF BLOOD-VESSELS IN CHRONIC EXPERIMENTAL SPINAL-CORD INJURY - HYPERVASCULARITY AND RECOVERY OF FUNCTION [J].
BLIGHT, AR .
JOURNAL OF THE NEUROLOGICAL SCIENCES, 1991, 106 (02) :158-174
[10]   INCREASED LEVELS OF THE EXCITOTOXIN QUINOLINIC ACID IN SPINAL-CORD FOLLOWING CONTUSION INJURY [J].
BLIGHT, AR ;
SAITO, K ;
HEYES, MP .
BRAIN RESEARCH, 1993, 632 (1-2) :314-316