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ependymoma/글루타티온

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조항임상 시험특허
6 결과

Glutathione S-transferase polymorphisms and survival in primary malignant glioma.

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OBJECTIVE The purpose of this research was to investigate the relationship between glutathione S-transferase (GST) polymorphisms and survival, and chemotherapy-related toxicity in 278 glioma patients. METHODS We determined genetic variants for GSTM1, GSTT1, and GSTP1 enzymes by PCR and restriction

Prognostic value of immunoexpression of the chemoresistance-related proteins in ependymomas: an analysis of 76 cases.

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Intracranial ependymomas are the third most common primary brain tumor in children. A variety of chemotherapy protocols have been introduced for the treatment of ependymoma although overall these have not contributed to patients outcome. To our knowledge, data on the prognostic value of
METHODS We describe the case of a 5-year-old-boy who underwent surgery and focal radiotherapy for an anaplastic ependymoma of the fourth ventricle. One year later, a spinal metastasis was treated the same way. Six years later, a 16-mm lesion was found on a control MRI in the posterior fossa. To help

A study of the expression of four chemoresistance-related genes in human primary and metastatic brain tumours.

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We investigated four mechanisms of intrinsic chemoresistance in a series of 67 human brain tumours including 31 gliomas (one grade I ganglioglioma, nine grade II and 10 grade III astrocytomas, 11 glioblastomas), 13 cerebral metastases, one medulloblastoma, one malignant teratoma, three ependymomas

Redox status expressed as GSH:GSSG ratio as a marker for oxidative stress in paediatric tumour patients.

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Oxidative stress causes profound alterations of various biological structures, including cellular membranes, lipids, proteins and nucleic acids, and it is involved in numerous malignancies. Reduced glutathione (GSH) is considered to be one of the most important scavengers of reactive oxygen species

Tissue metabolite profiles for the characterisation of paediatric cerebellar tumours.

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Paediatric brain tumors are becoming well characterized due to large genomic and epigenomic studies. Metabolomics is a powerful analytical approach aiding in the characterization of tumors. This study shows that common cerebellar tumors have metabolite profiles sufficiently different to build
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