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      PRAME gene expression profile in medulloblastoma Translated title: Perfil de expressão do gene PRAME em meduloblastoma

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          Abstract

          Medulloblastoma is the most common malignant tumors of central nervous system in the childhood. The treatment is severe, harmful and, thus, has a dismal prognosis. As PRAME is present in various cancers, including meduloblastoma, and has limited expression in normal tissues, this antigen can be an ideal vaccine target for tumor immunotherapy. In order to find a potential molecular target, we investigated PRAME expression in medulloblastoma fragments and we compare the results with the clinical features of each patient. Analysis of gene expression was performed by real-time quantitative PCR from 37 tumor samples. The Mann-Whitney test was used to analysis the relationship between gene expression and clinical characteristics. Kaplan-Meier curves were used to evaluate survival. PRAME was overexpressed in 84% samples. But no statistical association was found between clinical features and PRAME overexpression. Despite that PRAME gene could be a strong candidate for immunotherapy since it is highly expressed in medulloblastomas.

          Translated abstract

          Meduloblastoma é o tumor maligno mais comum em sistema nervoso central na infância. O tratamento é agressivo e o prognóstico é restrito. Como PRAME está presente em vários tumores, incluindo meduloblastoma, e possui baixa expressão em tecidos normais, este antígeno pode ser ideal na imunoterapia. A fim de encontrar um potencial alvo molecular, investigamos a expressão PRAME em fragmentos de meduloblastoma e comparamos os resultados com as características clínicas de cada paciente. Análise da expressão do gene foi realizada por PCR real-time quantitativo em 37 amostras de tumor. O teste de Mann-Whitney foi utilizado para análise da relação entre a expressão do gene e características clínicas e teste de Kaplan-Meier para avaliar a sobrevida. PRAME teve superexpresssão em 84% amostras, mas não houve nenhuma relação estatística entre as características clínicas e superexpressão de PRAME. Apesar disso, o gene PRAME poderia ser um forte candidato para a imunoterapia, pois é altamente expresso em meduloblastomas.

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          Most cited references32

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          Characterization of an antigen that is recognized on a melanoma showing partial HLA loss by CTL expressing an NK inhibitory receptor.

          Melanoma lines MEL.A and MEL.B were derived from metastases removed from patient LB33 in 1988 and 1993, respectively. The MEL.A cells express several antigens recognized by autologous cytolytic T lymphocytes (CTL) on HLA class I molecules. The MEL.B cells have lost expression of all class I molecules except for HLA-A24. By stimulating autologous lymphocytes with MEL.B, we obtained an HLA-A24-restricted CTL clone that lysed these cells. A novel gene, PRAME, encodes the antigen. It is expressed in a large proportion of tumors and also in some normal tissues, albeit at a lower level. Surprisingly, the CTL failed to lyse MEL.A, even though these cells expressed the gene PRAME. The CTL expresses an NK inhibitory receptor that inhibits its lytic activity upon interaction with HLA-Cw7 molecules, which are present on MEL.A cells and not on MEL.B. Such CTL, active against tumor cells showing partial HLA loss, may constitute an intermediate line of anti-tumor defense between the CTL, which recognize highly specific tumor antigens, and the NK cells, which recognize HLA loss variants.
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            Analysis of relative gene expression data using real-time quantitative PCR and the 2(-Delta Delta C(T)) Method

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              Three or more routes for leukocyte migration into the central nervous system.

              Leukocyte migration into and through tissues is fundamental to normal physiology, immunopathology and host defence. Leukocyte entry into the central nervous system (CNS) is restricted, in part, because of the blood-brain barrier (BBB). During the past decade, crucial components that are involved in the process of leukocyte migration have been identified and progress has been made in understanding the mechanisms of neuroinflammatory reactions. In this review, present knowledge of the trafficking determinants that guide the migration of leukocytes is superimposed onto the vascular and compartmental anatomy of the CNS. We discuss three distinct routes for leukocytes to enter the CNS and consider how different populations of leukocytes use trafficking signals to gain entry.
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                Author and article information

                Contributors
                Role: ND
                Role: ND
                Role: ND
                Role: ND
                Role: ND
                Journal
                anp
                Arquivos de Neuro-Psiquiatria
                Arq. Neuro-Psiquiatr.
                Academia Brasileira de Neurologia - ABNEURO (São Paulo )
                1678-4227
                February 2011
                : 69
                : 1
                : 9-12
                Affiliations
                [1 ] Universidade Federal de São Paulo Brazil
                [2 ] Universidade Federal de São Paulo Brazil
                [3 ] Universidade Federal de São Paulo Brazil
                Article
                S0004-282X2011000100003
                10.1590/S0004-282X2011000100003
                21359415
                633b188c-4f1e-4e72-9d84-4db6fa54c518

                http://creativecommons.org/licenses/by/4.0/

                History
                Product

                SciELO Brazil

                Self URI (journal page): http://www.scielo.br/scielo.php?script=sci_serial&pid=0004-282X&lng=en
                Categories
                NEUROSCIENCES
                PSYCHIATRY

                Neurosciences,Clinical Psychology & Psychiatry
                PRAME,gene expression,medulloblastoma,immunotherapy,expressão gênica,meduloblastoma,imunoterapia

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