Glucocorticoid regulation of motoneuronal parameters in rats with spinal cord injury

被引:27
作者
Gonzalez, SL
Saravia, F
Deniselle, MCG
Lima, AE
De Nicola, AF
机构
[1] Univ Buenos Aires, CONICET, Inst Biol & Med Expt, Lab Neuroendocrine Biochem, RA-1428 Buenos Aires, DF, Argentina
[2] Univ Buenos Aires, Fac Med, Dept Human Biochem, RA-1053 Buenos Aires, DF, Argentina
[3] Fdn Barcelo, Inst Univ Ciencias Salud, Buenos Aires, DF, Argentina
基金
美国国家卫生研究院;
关键词
spinal cord transection; glucocorticoids; p75 neurotrophin receptor; choline acetiltransferase; motoneurons; neuroprotection;
D O I
10.1023/A:1006980301382
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
1. Glucocorticoids exert beneficial effects after acute CNS injury in humans and experimental animals. To elucidate potential mechanisms of glucocorticoid action in the lesioned spinal cord, we have studied if treatment with dexamethasone (DEX) modulated the neurotrophin binding receptor p75 (p75(NTR)) and choline acetyltransferase (ChAT), a marker of neuronal functional viability. 2. Rats with a sham operation or with spinal cord transection at the thoracic level received vehicle or DEX several times postlesion and were sacrificed 48 hr after surgery. The lumbar region caudal to the lesion was processed for p75(NTR) and ChAT immunoreactivity (IR) using quantitative densitometric analysis. 3. We observed that p75(NTR)-IR was absent from ventral horn motoneurons of sham-operated rats, in contrast to strong staining of neuronal perikaryon in TRX rats. Administration of DEX to TRX rats had no effect on the number of neuronal cell bodies expressing p75(NTR)-IR but significantly increased the number and length of immunostained neuronal processes. 4. Furthermore, spinal cord transection reduced ChAT immunostaining of motoneurons by 50%, whereas DEX treatment reverted this pattern to cells with a strong immunoreaction intensity in perikaryon and cell processes. 5. It is hypothesized that increased expression of p75(NTR) in cell processes and of ChAT in motoneurons may be part of a mechanism by which glucocorticoids afford neuroprotection, in addition to their known antiinflammatory effects.
引用
收藏
页码:597 / 611
页数:15
相关论文
共 59 条
[31]   CELL-SPECIFIC MODULATION OF BASAL AND SEIZURE-INDUCED NEUROTROPHIN EXPRESSION BY ADRENALECTOMY [J].
LAUTERBORN, J ;
BERSCHAUER, R ;
GALL, C .
NEUROSCIENCE, 1995, 68 (02) :363-378
[32]   Nerve growth factor: From neurotrophin to neurokine [J].
LeviMontalcini, R ;
Skaper, SD ;
DalToso, R ;
Petrelli, L ;
Leon, A .
TRENDS IN NEUROSCIENCES, 1996, 19 (11) :514-520
[33]   DIFFERENTIAL REGULATION OF NERVE GROWTH-FACTOR (NGF) SYNTHESIS IN NEURONS AND ASTROCYTES BY GLUCOCORTICOID HORMONES [J].
LINDHOLM, D ;
CASTREN, E ;
HENGERER, B ;
ZAFRA, F ;
BERNINGER, B ;
THOENEN, H .
EUROPEAN JOURNAL OF NEUROSCIENCE, 1992, 4 (05) :404-410
[34]   NEUROTROPHIC FACTORS - FROM MOLECULE TO MAN [J].
LINDSAY, RM ;
WIEGAND, SJ ;
ALTAR, CA ;
DISTEFANO, PS .
TRENDS IN NEUROSCIENCES, 1994, 17 (05) :182-190
[35]   NEUROTROPHINS AND BRAIN INSULTS [J].
LINDVALL, O ;
KOKAIA, Z ;
BENGZON, J ;
ELMER, E ;
KOKAIA, M .
TRENDS IN NEUROSCIENCES, 1994, 17 (11) :490-496
[36]   DISTRIBUTION OF GLUCOCORTICOID RECEPTOR MESSENGER-RNA IN THE RAT SPINAL-CORD [J].
MARLIER, LNJL ;
CSIKOS, T ;
REBAUDENGO, N ;
BORBONI, P ;
PATACCHIOLI, FR ;
ANGELUCCI, L ;
PRIVAT, A ;
LAURO, R .
NEUROREPORT, 1995, 6 (16) :2245-2249
[37]   THE NERVE GROWTH-FACTOR FAMILY OF RECEPTORS [J].
MEAKIN, SO ;
SHOOTER, EM .
TRENDS IN NEUROSCIENCES, 1992, 15 (09) :323-331
[38]  
MOCCETTI I, 1996, J NEUROSCI, V15, P2141
[39]   GLUCOCORTICOID TYPE-II RECEPTORS OF THE SPINAL-CORD SHOW LOWER AFFINITY THAN HIPPOCAMPAL TYPE-II RECEPTORS - BINDING PARAMETERS OBTAINED WITH DIFFERENT EXPERIMENTAL PROTOCOLS [J].
MOSES, DF ;
GONZALEZ, S ;
MCEWEN, BS ;
DENICOLA, AF .
JOURNAL OF STEROID BIOCHEMISTRY AND MOLECULAR BIOLOGY, 1991, 39 (01) :5-12
[40]   Transient decrease of acetylcholinesterase in ventral horn neurons caudal to a low thoracic spinal cord hemisection in the adult rat [J].
Nacimiento, W ;
Schlozer, B ;
Brook, GA ;
Toth, L ;
Topper, R ;
Noth, J ;
Kreutzberg, GW .
BRAIN RESEARCH, 1996, 714 (1-2) :177-184