|
Sign In to gain access to subscriptions and/or personal tools.
|
Review Article: A Review of Experimental Methylmercury Toxicity in Rats: Neuropathology and Evidence for Apoptosis
Kazuo Nagashima
Department of Pathology, Hokkaido University School of Medicine, North 15, West 7, Kita-ku, Sapporo 060, Japan, knagasi{at}med.hokudai.ac.jp
As an animal model for examining the pathogenicity of human organic mercury intoxication, rats have been used for the reproduction of human neurologic diseases. Rats experimentally exposed to methylmercury chloride showed clinical signs of neurologic dysfunction characterized by ataxic behavior. Neuropathology of the diseased animals consisted of lesions such as: (a) degeneration of the peripheral nerve and sensory root nerve with preservation of the motor root nerve; (b) degeneration of the posterior funiculus of the spinal cord; and (c) degeneration of cerebellar granule cells with preservation of Purkinje cells. These findings suggest the human neuropathology of this toxicity. The degeneration was characterized by nerve fiber damage or neuronal cell death accompanied by astrocytic gliosis and activated macrophages or microglias. For the cerebellar granule cells, the mechanism of neuronal cell death was shown to be apoptosis. This fact was verified by histologic and ultrastructural findings as well as by in situ nick-end labeling and electrophoretic methods. Evidence of apoptosis involvement in cerebellar degeneration would provide a new viewpoint from which to analyze the selected degeneration of the nervous system in neurotoxicology.
Key Words: Cerebellum granular cell methylmercury chloride
- Barinaga M. (1996). Forging a path to cell death. Science 273: 735-737.[Free Full Text]
- Berlin M., Grant CA, Hellberg J., Hellstroem J., and Schuetz A. (1975). Neurotoxicity of mercury in squirrel monkeys. Cerebral cortical pathology, interference with scotopic vision, and changes in operant behavior. Arch. Environ. Health 30: 340-348.[Web of Science][Medline]
[Order article via Infotrieve]
- Bredesen DE (1995). Neuronal apoptosis. Ann. Neurol. 38: 839-851.[CrossRef][Web of Science][Medline]
[Order article via Infotrieve]
- Chang LW and Verity MA (1995). Mercury neurotoxicity: Effects and mechanisms. In: Handbook of Neurotoxicology, LW Chang and RS Dyer (eds). Marcel Dekker, New York, pp. 31-59.
- Damoiseaux JG, Dopp EA, Calame W., Chao D., MacPherson GG, and Dijkstra (1994). Rat macrophage lysosomal membrane antigen recognized by monoclonal antibody ED1. Immunology 83: 140-147.[Web of Science][Medline]
[Order article via Infotrieve]
- Davis LE, Kornfeld M., Mooney HS, Fiedler KJ, Haaland KY, Orrison WW, Cernichiari E., and Clarkson TW (1994). Methylmercury poisonings: Long-term clinical, radiological, toxicological, and pathological studies of an affected family. Ann. Neurol. 35: 680-688.[CrossRef][Web of Science][Medline]
[Order article via Infotrieve]
- Debus E., Weber K., and Osborn M. (1983). Monoclonal antibodies specific for glial fibrillary acidic (GFA) protein and for each of the neurofilament triplet polypeptides. Differentiation 25: 193-203.[CrossRef][Web of Science][Medline]
[Order article via Infotrieve]
- D'Mello SR, Galli C., Ciotti T., and Calissano P. (1993). Induction of apoptosis in cerebellar granule neurons by low potassium: Inhibition of death by insulin-like growth factor I and cAMP. Proc. Natl. Acad. Sci. USA 90: 10989-10993.[Abstract/Free Full Text]
- Fukuhara N. (1969). Ultrastructural changes in the cerebellar granule cell layers of experimental organic mercury poisoning in rats. Rinsho Shinkeigaku 9: 187-198.[Medline]
[Order article via Infotrieve]
- Galli C., Meucci O., Scorziello A., Werge TM, Calissano P., and Schettini G. (1995). Apoptosis in cerebellar granule cells is blocked by high KCl, forskolin, and IGF-1 through distinct mechanisms of action: The involvement of cellular calcium and RNA synthesis. J. Neurosci. 15: 1172-1179.[Abstract]
- Gavrieli Y., Sherman Y., and Ben-Sasson SA (1992). Identification of programmed cell death in situ via specific labeling of nuclear DNA fragmentation. J. Cell Biol. 119: 493-501.[Abstract/Free Full Text]
- Giuffrida R. and Rustioni A. (1992). Dorsal root ganglion neurons projecting to the dorsal column nuclei of rats. J. Comp. Neurol. 316: 206-220.[CrossRef][Web of Science][Medline]
[Order article via Infotrieve]
- Hunter D. and Russell D. (1954). Focal cerebral and cerebellar atrophy in a human subject due to organic mercury compounds. J. Neurol. Neurosurg. Psychiatry 17: 235-241.[Free Full Text]
- Irukayama K., Kai F., Fujiki M., and Kondo T. (1962). Studies on the origin of the causative agent of Minamata disease. III. Industrial waste containing mercury compounds from Minamata factory. Kumamoto Med. J. 15: 57-68.[Medline]
[Order article via Infotrieve]
- Kobayashi Y. and Nagashima K. (1998). Distribution of initial neuronal death assessed by apoptosis in the cerebellar vermis in rat organic mercury intoxication. Neuropathology 18 (in press).
- Kubo T., Nonomura T., Enokido Y., and Hatanaka H. (1995). Brain-derived neurotrophic factor (BDNF) can prevent apoptosis of rat cerebellar granule neurons in culture. Brain Res. 85: 249-258.[CrossRef]
- Kunimoto M. (1994). Methylmercury induces apoptosis of rat cerebellar neurons in primary culture. Biochem. Biophys. Res. Commun. 204: 310-317.[CrossRef][Web of Science][Medline]
[Order article via Infotrieve]
- Miyakawa T. and Deshimaru M. (1969). Electron microscopic study of experimentally induced poisoning due to organic mercury compound: Mechanism of development of morbid change. Acta Neuropathol. (Berl.) 14: 126-136.[CrossRef][Medline]
[Order article via Infotrieve]
- Morikawa N. (1961). Pathological studies on organic mercury poisoning. I. Experimental organic mercury poisoning in cats and its relation to the causative agent of Minamata disease. Kumamoto Med. J. 14: 71-86.
- Munro IC, Nera EA, Charbonneau SM, Junkins B., and Zawidzka Z. (1980). Chronic toxicity of methylmercury in the rat. J. Environ. Pathol. Toxicol. Oncol. 3: 437-447.
- Nagashima K., Fujii Y., Tsukamoto T., Nukuzuma S., Satoh M., Fujita M., Fujioka Y., and Akagi H. (1996). Apoptotic process of cerebellar degeneration in experimental methylmercury intoxication of rats. Acta Neuropathol. (Berl.) 91: 72-77.[Medline]
[Order article via Infotrieve]
- Nagata S. (1997). Apoptosis by death factor. Cell 88: 355-365.[CrossRef][Web of Science][Medline]
[Order article via Infotrieve]
- Omata S. (1986). Biochemical studies on methylmercury poisoning in nervous tissues. In: Recent Advances in Minamata Disease Studies: Methylmercury Poisoning in Minamata and Niigata, Japan, T Tsubaki and H Takahashi (eds), Kodansha, Tokyo, pp. 150-169.
- Omata S., Momose Y., Ueki H., Sugano H. (1982). In vivo effect of methylmercury on protein synthesis in peripheral nervous tissues of the rat. Arch. Toxicol. 49: 203-214.[CrossRef][Web of Science][Medline]
[Order article via Infotrieve]
- Rösl F. (1992). A simple and rapid method for detection of apoptosis in human cells. Nucleic Acids Res. 20: 19.
- Sakamoto M., Nakano A., Kajiwara Y., Naruse I., and Fujisaki T. (1993). Effects of methyl mercury in postnatal developing rats. Environ. Res. 61: 43-50.[Medline]
[Order article via Infotrieve]
- Sefton AJ and Dreher B. (1985). Visual system. In: The Rat Nervous System, Vol. 1, Forebrain and Midbrain, G Paxinos (ed). Academic Press, Sydney, pp. 169-221.
- Shaw C.-M, Mottet K., Body RL, and Luschei ES (1975). Variability of neuropathologic lesions in experimental methylmercurial encephalopathy in primates. Am. J. Pathol. 80: 451-470.[Abstract]
- Su M., Kakita A., Wakabayashi K., Yamada M., Takahashi H. and Ikuta F. (1997). Degeneration of spinal dorsal root ganglia in adult rats treated with methylmercury: Chronological observations on the cell bodies, centrally directed axons and presynaptic terminals. Neuropathology 17: 201-207.[CrossRef][Web of Science]
- Su M., Kakita A., Yamada M., Takahashi H., and Ikuta F. (1996). Degeneration of the synaptic boutons of parallel fibers in rats treated with methylmercury: Chronological observations. Neuropathology 16: 172-177.[CrossRef][Web of Science]
- Suda I., Eto K., Tokunaga H., Furusawa R., Suetomi K., and Takahashi H. (1989). Different histochemical findings in the brain produced by mercuric chloride and methyl mercury chloride in rats. Neurotoxicology 10: 113-125.[Web of Science][Medline]
[Order article via Infotrieve]
- Suzuki T., Imura N., and Clarkson TW (1991). Advances in Mercury Toxicology. Plenum Press, New York.
- Takeuchi T. (1982). Pathology of Minamata disease. With special reference to its pathogenesis. Acta Pathol. Jpn. 32(suppl. 1): 73-99.[Medline]
[Order article via Infotrieve]
- Takeuchi T., Eto K., and Tokunaga H. (1989). Mercury level and histochemical distribution in a human brain with Minamata disease following a long-term clinical course of twenty-six years. Neurotoxicology 10: 651-657.[Web of Science][Medline]
[Order article via Infotrieve]
- Tanaka M., Sawada M., Yoshida S., Hanaoka F., and Marunouchi T. (1995). Insulin prevents apoptosis of external granule layer neurons in rat cerebellar slice cultures. Neurosci. Lett. 199: 37-40.[CrossRef][Web of Science][Medline]
[Order article via Infotrieve]
- Tsubaki T. and Takahashi H. (1986). Recent Advances in Minamata Disease Studies. Kodansha, Tokyo.
- Wakabayashi M., Araki K., and Takahashi Y. (1976). Increased rate of fast axonal transport in methylmercury-induced neuropathy. Brain Res. 117: 524-528.[CrossRef][Web of Science][Medline]
[Order article via Infotrieve]
- Wood KA, Dipasquale B., and Youle RJ (1993). In situ labeling of granule cells for apoptosis-associated DNA fragmentation reveals different mechanisms of cell loss in developing cerebellum. Neuron 11: 621-632.[CrossRef][Web of Science][Medline]
[Order article via Infotrieve]
- Wood KA and Youls RJ (1995). The role of free radicals and p53 in neuron apoptosis in vivo. J. Neurosci. 15: 5851-5857.[Abstract]
Toxicologic Pathology, Vol. 25, No. 6,
624-631 (1997)
DOI: 10.1177/019262339702500613

CiteULike Complore Connotea Del.icio.us Digg Reddit Technorati Twitter What's this?
This article has been cited by other articles:

|
 |

|
 |
 
K. Eto, H. Tokunaga, K. Nagashima, and T. Takeuchi
An Autopsy Case of Minamata Disease (Methylmercury Poisoning)--Pathological Viewpoints of Peripheral Nerves
Toxicol Pathol,
October 1, 2002;
30(6):
714 - 722.
[Abstract]
[PDF]
|
 |
|

|
 |

|
 |
 
K. Eto, A. Yasutake, T. Kuwana, Y. Korogi, M. Akima, T. Shimozeki, H. Tokunaga, and Y. Kaneko
Methylmercury Poisoning in Common Marmosets--A Study of Selective Vulnerability Within the Cerebral Cortex
Toxicol Pathol,
August 1, 2001;
29(5):
565 - 573.
[Abstract]
[PDF]
|
 |
|

|
 |

|
 |
 
A. S. Fix and J. F. Ross
Mercury Neurotoxicity in Rats and Humans Emphasizes Current Trends in Neurotoxicology
Toxicol Pathol,
November 1, 1997;
25(6):
632 - 634.
[PDF]
|
 |
|
|
|