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A highly sulfated chondroitin sulfate preparation, CS-E, prevents excitatory amino acid-induced neuronal cell death
Authors:Sato Yoshiaki  Nakanishi Keiko  Tokita Yoshihito  Kakizawa Hiroko  Ida Michiru  Maeda Hiroshi  Matsui Fumiko  Aono Sachiko  Saito Akiko  Kuroda Yoshiyuki  Hayakawa Masahiro  Kojima Seiji  Oohira Atsuhiko
Institution:Department of Perinatology, Institute for Developmental Research, Aichi Human Service Center, Kasugai, Aichi, Japan;
Department of Pediatrics, Nagoya University Graduate School of Medicine, Nagoya, Japan;
Department of Neonatology, Central Hospital, Aichi Human Service Center, Kasugai, Aichi, Japan;
Central Research Laboratories, Seikagaku Corporation., Higashiyamato, Tokyo, Japan;
Maternity and Perinatal Care Center, Nagoya University Hospital, Nagoya, Japan
Abstract:Chondroitin sulfate (CS) is a major microenvironmental molecule in the CNS, and there have been few reports about its neuroprotective activity. As neuronal cell death by excitotoxicity is a crucial phase in many neuronal diseases, we examined the effect of various CS preparations on neuronal cell death induced by the excitotoxicity of glutamate analogs. CS preparations were added to cultured neurons before and after the administration of glutamate analogs. Then, the extents of both neuronal cell death and survival were estimated. Pre-administration of a highly sulfated CS preparation, CS-E, significantly reduced neuronal cell death induced by not only NMDA but also ( S )-α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid or kainate. Neither CS preparations other than CS-E nor other highly sulfated polysaccharides such as heparin and dextran sulfate exerted any neuroprotective effects. NMDA-induced current in neurons was not changed by pre-administration of CS-E, but the pattern of protein-tyrosine phosphorylation was changed. In addition, the elevation of caspase 3 activity was significantly suppressed in CS-E-treated neurons. These results indicate that CS-E prevents neuronal cell death mediated by various glutamate receptors, and suggest that phosphorylation-related intracellular signals and the suppression of caspase 3 activation are implicated in neuroprotection by CS-E.
Keywords:caspase 3  chondroitin sulfate  excitotoxicity  glutamate receptor  neuronal death  neuroprotection
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