Mechanisms of neurodegeneration in neuronal ceroid-lipofuscinoses

被引:29
作者
Hachiya, Y
Hayashi, M
Kumada, S
Uchiyama, A
Tsuchiya, K
Kurata, K
机构
[1] SMID, Metropolitan Fuchu Med Ctr, Dept Pediat, Fuchu, Tokyo 1830042, Japan
[2] Tokyo Metropolitan Inst Neurosci, Dept Clin Neuropathol, Tokyo, Japan
[3] Tokyo Metropolitan Neurol Hosp, Dept Neuropediat, Tokyo, Japan
[4] Tokyo Metropolitan Neurol Hosp, Dept Lab Med, Tokyo, Japan
关键词
neuronal ceroid-lipofuscinosis; TUNEL; immunohistochemistry; oxidative stress; calcium-binding proteins;
D O I
10.1007/s00401-005-0024-x
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Neuronal ceroid-lipofuscinoses (NCL) are a group of neurodegenerative diseases and autosomal recessive lysosomal storage disorders. We examined the involvement of cell death, oxidative stress, and glutamate excitotoxicity using immunohistochemistry against Bcl-2, Bcl-x, oxidative products to proteins, lipids and DNA, calcium-binding proteins (calbindin-D28K, parvalbumin, calretinin), and glial glutamate transporters (excitatory amino acid transporters 1 and 2), in addition to terminal deoxynucleotidyl transferase-mediated dUTP-nick end labeling (TUNEL) in the brains from three cases of late infantile form of NCL (LINCL) and one case of juvenile form of NCL (JNCL) to investigate the neurodegenerative mechanisms. In the cerebral and cerebellar cortex, all of three LINCL cases demonstrated neurons with TUNEL-immunoreactive nuclei, whereas the JNCL case did not show TUNEL-immunoreactive nuclei. The coexistence of the nuclear TUNEL-immunoreactivity nuclei and cytoplasmic deposition of 4-hydroxy-2-nonenal-modified protein in the frontal cortex and hypoglossal nucleus may suggest a possible interrelationship between DNA fragmentation and lipid oxidation in LINCL. Additionally, glycoxidation of protein and oxidative stress to DNA seemed to be involved in the cerebellar and cerebral degeneration, respectively. Interneurons immunoreactive for calbindin-D28K and parvalbumin were severely reduced in the cerebral cortex, whereas those for calretinin were comparatively well preserved in LINCL, indicating the possibility of altered GABAergic system. The disturbance of expression of glial glutamate transporters seemed to be heterogeneous and mild. These findings suggest the possibility of new treatments for neurodegeneration in LINCL using antioxidative agents and/or GABAergic medications.
引用
收藏
页码:168 / 177
页数:10
相关论文
共 35 条
[1]   Selective deficits in prefrontal cortical GABAergic neurons in schizophrenia defined by the presence of calcium-binding proteins [J].
Beasley, CL ;
Zhang, ZJ ;
Patten, I ;
Reynolds, GP .
BIOLOGICAL PSYCHIATRY, 2002, 52 (07) :708-715
[2]   Superoxide dismutase and glutathione peroxidase function in progressive myoclonus epilepsies [J].
Ben-Menachem, E ;
Kyllerman, M ;
Marklund, S .
EPILEPSY RESEARCH, 2000, 40 (01) :33-39
[3]   Neurodegenerative diseases and oxidative stress [J].
Emerit, J ;
Edeas, A ;
Bricaire, F .
BIOMEDICINE & PHARMACOTHERAPY, 2004, 58 (01) :39-46
[4]   The intracellular location and function of proteins of neuronal ceroid lipofuscinoses [J].
Ezaki, J ;
Kominami, E .
BRAIN PATHOLOGY, 2004, 14 (01) :77-85
[5]   Current state of clinical and morphological features in human NCL [J].
Goebel, HH ;
Wisniewski, KE .
BRAIN PATHOLOGY, 2004, 14 (01) :61-69
[6]  
Haltia M, 2003, J NEUROPATH EXP NEUR, V62, P1
[7]   Oxidative nucleotide damage and superoxide dismutase expression in the brains of xeroderma pigmentosum group A and Cockayne syndrome [J].
Hayashi, M ;
Araki, S ;
Kohyama, J ;
Shioda, K ;
Fukatsu, R .
BRAIN & DEVELOPMENT, 2005, 27 (01) :34-38
[8]   Brainstem and basal ganglia lesions in xeroderma pigmentosum group A [J].
Hayashi, M ;
Araki, S ;
Kohyama, J ;
Shioda, K ;
Fukatsu, R ;
Tamagawa, K .
JOURNAL OF NEUROPATHOLOGY AND EXPERIMENTAL NEUROLOGY, 2004, 63 (10) :1048-1057
[9]   Neurodegenerative mechanisms in subacute sclerosing panencephalitis [J].
Hayashi, M ;
Arai, N ;
Satoh, J ;
Suzuki, H ;
Katayama, K ;
Tamagawa, K ;
Morimatsu, Y .
JOURNAL OF CHILD NEUROLOGY, 2002, 17 (10) :725-730
[10]   Oxidative stress and disturbed glutamate transport in spinal muscular atrophy [J].
Hayashi, M ;
Araki, S ;
Arai, N ;
Kumada, S ;
Itoh, M ;
Tamagawa, K ;
Oda, M ;
Morimatsu, Y .
BRAIN & DEVELOPMENT, 2002, 24 (08) :770-775