Acrylamide neuropathy III. Spatiotemporal characteristics of nerve cell damage in forebrain

被引:45
作者
Lehning, EJ
Balaban, CD
Ross, JF
LoPachin, RM
机构
[1] Montefiore Med Ctr, Albert Einstein Coll Med, Dept Anesthesiol, Bronx, NY 10467 USA
[2] Univ Pittsburgh, Dept Otolaryngol, Eye & Ear Inst 107, Pittsburgh, PA 15213 USA
[3] Hlth & Environm Safety Alliance, Cincinnati, OH 45215 USA
关键词
toxic neuropathy; nerve terminals; axon degeneration; distal axonopathy; neurotoxicity;
D O I
10.1016/S0161-813X(02)00155-9
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Previous studies of acrylamide (ACR) neuropathy in rat PNS [Toxicol. Appl. Pharmacol. (1998) 151: 211-221] and in spinal cord, brainstem and cerebellum [NeuroToxicology (2002a) 23: 397-414; NeuroToxicology (2002b) 23: 415 4291 have suggested that axon degeneration was not a primary effect and was, therefore, of unclear neurotoxicological significance. To conclude our studies of neurodegeneration in rat CNS during ACR neurotoxicity, a cupric silver stain method was used to define spatiotemporal characteristics of nerve cell body, dendrite, axon and terminal argyrophilia in forebrain regions and nuclei. Rats were exposed to ACR at a dose-rate of either 50 mg/kg per day (i.p.) or 21 mg/kg per day (p.o.) and at selected times brains were removed and processed for silver staining. Results show that intoxication at either ACR dose-rate produced a terminalopathy, i.e. nerve terminal degeneration and swelling were present in the absence of significant argyrophilic changes in neuronal cell bodies, dendrites or axons. Exposure to the higher ACR dose-rate caused early onset (day 5), widespread nerve terminal degeneration in most of the major forebrain areas, e.g. cerebral cortex, thalamus, hypothalamus and basal ganglia. At the lower dose-rate, nerve terminal degeneration in the forebrain developed early (day 7) but exhibited a relatively limited spatial distribution, i.e. anteroventral thalamic nucleus and the pars reticulata of the substantia nigra. Several hippocampal regions were affected at a later time point (day 28), i.e. CA] field and subicular complex. At both dose-rates, argyrophilic changes in forebrain nerve terminals developed prior to the onset of significant gait abnormalities. Thus, in forebrain, ACR intoxication produced a pure terminalopathy that developed prior to the onset of significant neurological changes and progressed as a function of exposure. Neither dose-rate used in this study was associated with axon degeneration in any forebrain region. Our findings indicate that nerve terminals were selectively affected in forebrain areas and, therefore, might be primary sites of ACR action. (C) 2002 Elsevier Science Inc. All rights reserved.
引用
收藏
页码:125 / 136
页数:12
相关论文
共 65 条
[21]   The impact of dose rate on the neurotoxicity of acrylamide: The interaction of administered dose, target tissue concentrations, tissue damage, and functional effects [J].
Crofton, KM ;
Padilla, S ;
Tilson, HA ;
Anthony, DC ;
Raymer, JH ;
MacPhail, RC .
TOXICOLOGY AND APPLIED PHARMACOLOGY, 1996, 139 (01) :163-176
[22]   EARLY DEGENERATION AND SPROUTING AT THE RAT NEUROMUSCULAR-JUNCTION FOLLOWING ACRYLAMIDE ADMINISTRATION [J].
DEGRANDCHAMP, RL ;
LOWNDES, HE .
NEUROPATHOLOGY AND APPLIED NEUROBIOLOGY, 1990, 16 (03) :239-254
[23]   SYNAPTIC TERMINAL DEGENERATION AND REMODELING AT THE RAT NEUROMUSCULAR-JUNCTION RESULTING FROM A SINGLE EXPOSURE TO ACRYLAMIDE [J].
DEGRANDCHAMP, RL ;
REUHL, KR ;
LOWNDES, HE .
TOXICOLOGY AND APPLIED PHARMACOLOGY, 1990, 105 (03) :422-433
[24]   USE OF AN AMINO-CUPRIC-SILVER TECHNIQUE FOR THE DETECTION OF EARLY AND SEMIACUTE NEURONAL DEGENERATION CAUSED BY NEUROTOXICANTS, HYPOXIA, AND PHYSICAL TRAUMA [J].
DEOLMOS, JS ;
BELTRAMINO, CA ;
DELORENZO, SDO .
NEUROTOXICOLOGY AND TERATOLOGY, 1994, 16 (06) :545-561
[25]   PRIMARY AFFERENT TERMINAL FUNCTION FOLLOWING ACRYLAMIDE - ALTERATIONS IN THE DORSAL-ROOT POTENTIAL AND REFLEX [J].
DEROJAS, TC ;
GOLDSTEIN, BD .
TOXICOLOGY AND APPLIED PHARMACOLOGY, 1987, 88 (02) :175-182
[26]   MK-801 neurotoxicity in cupric silver-stained sections: Lesion reconstruction by 3-dimensional computer image analysis [J].
Fix, AS ;
Stitzel, SR ;
Ridder, GM ;
Switzer, RC .
TOXICOLOGIC PATHOLOGY, 2000, 28 (01) :84-90
[27]   Integrated evaluation of central nervous system lesions: Stains for neurons, astrocytes, and microglia reveal the spatial and temporal features of MK-801-induced neuronal necrosis in the rat cerebral cortex [J].
Fix, AS ;
Ross, JF ;
Stitzel, SR ;
Switzer, RC .
TOXICOLOGIC PATHOLOGY, 1996, 24 (03) :291-304
[28]  
FUTTERMAN AH, 1996, TRENDS NEUROSCI, V19, P144
[29]  
GHETTI B, 1973, AM J PATHOL, V70, pA78
[30]  
GOLDSTEIN BD, 1979, NEUROTOXICOLOGY, V1, P75