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Biomedical subjects

Soichi Obara

Publications and source records attributed to Soichi Obara.

3 recordsLinked to original sources

Integrin-linked kinase (ILK) regulation of the cell viability in PTEN mutant glioblastoma and in vitro inhibition by the specific COX-2 inhibitor NS-398.

We report the increased activity and expression of the ILK protein in human glioblastomas and demonstrate that ILK activity is regulated by PTEN. The transfection of wild type-PTEN into the glioblastoma cell line U-251 MG altered the localization of ILK in the cell membrane; transfection with PTEN down-regulated PKB/Akt-Ser-473 phosphorylation via the inhibition of ILK-signaling. Our results suggest that ILK is critical for the PTEN-sensitive regulation of PKB/Akt-dependent cell survival. The selective COX-2 inhibitor NS-398 was found capable of down-regulating ILK and PKB/Akt phosphorylation. Our data indicate that inhibition of ILK signaling may be beneficial in the treatment of PTEN-deficient glioblastoma.

Brain↗

Tumefactive myelinoclastic diffuse sclerosis--case report.

A 6-year-old boy presented with mental disturbance and progressive left hemiparesis. Magnetic resonance imaging demonstrated large intracranial mass lesions with ring-like enhancement. His neurological condition deteriorated rapidly. Open biopsy via craniotomy was performed under the suspicion of tumor. Histological examination showed massive demyelination and axon preservation, but no tumor cells. The diagnosis was myelinoclastic diffuse sclerosis (MDS). He was treated with high-dose methylprednisolone and improved dramatically. MDS is a rare demyelinating disorder of the central nervous system that affects mainly children and may mimic a brain tumor. MDS must be included in the differential diagnosis in young patients with a brain tumor with atypical radiological appearance.

Brain Neoplasms↗

Inhibition of migration of human glioblastoma cells by cerivastatin in association with focal adhesion kinase (FAK).

To investigate the biological effect of cerivastatin on glioblastoma cells, we exposed them to various concentrations of cerivastatin. Cerivastatin exhibited dual effects on glioblastoma cells in a dose-dependent manner. Immunofluorescence microscopy showed disruption of actin stress fibers and focal adhesion plaques even at nanomolar concentrations. Matrigel assay demonstrated marked inhibition of glioblastoma cell invasion. Immunoblot analysis using a phosphospecific antibody against focal adhesion kinase (FAK) showed that inhibition of migration was associated with the down-regulation of tyrosine phosphorylation of FAK. Our data suggest that cerivastatin may be beneficial for combination therapy with conventional anti-cancer drugs by inhibiting the invasion of glioblastoma.

Brain Neoplasms↗