62 research outputs found

    Duplications of KIAA1549 and BRAF screening by Droplet Digital PCR from formalin-fixed paraffin-embedded DNA is an accurate alternative for KIAA1549-BRAF fusion detection in pilocytic astrocytomas

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    Pilocytic astrocytomas represent the most common glioma subtype in young patients and account for 5.4% of all gliomas. They are characterized by alterations in the RAS–MAP kinase pathway, the most frequent being a tandem duplication on chromosome 7q34 involving the BRAF gene, resulting in oncogenic BRAF fusion proteins. BRAF fusion involving the KIAA1549 gene is a hallmark of pilocytic astrocytoma, but it has also been recorded in rare cases of gangliogliomas, 1p/19q co-deleted oligodendroglial tumors, and it is also a common feature of disseminated oligodendroglial-like leptomeningeal neoplasm. In some difficult cases, evidence for KIAA1549-BRAF fusion is of utmost importance for the diagnosis. Moreover, because the KIAA1549-BRAF fusion constitutively activates the MAP kinase pathway, it represents a target for drugs such as MEK inhibitors, and therefore, the detection of this genetic abnormality is highly relevant in the context of clinical trials applying such new approaches. In the present study, we aimed to use the high sensitivity of Droplet Digital PCR (DDPCR™) to predict KIAA1549-BRAF fusion on very small amounts of formalin-fixed paraffin-embedded tissue in routine practice. Therefore, we analyzed a training cohort of 55 pilocytic astrocytomas in which the KIAA1549-BRAF fusion status was known by RNA sequencing used as our gold standard technique. Then, we analyzed a prospective cohort of 40 pilocytic astrocytomas, 27 neuroepithelial tumors remaining difficult to classify (pilocytic astrocytoma versus ganglioglioma or diffuse glioma), 15 dysembryoplastic neuroepithelial tumors, and 18 gangliogliomas. We could demonstrate the usefulness and high accuracy (100% sensitivity and specificity when compared to RNA sequencing) of DDPCR™ to assess the KIAA1549-BRAF fusion from very low amounts of DNA isolated from formalin-fixed paraffin-embedded specimens. BRAF duplication is both necessary and sufficient to predict this fusion in most cases and we propose that this single analysis could be used in routine practice to save time, money, and precious tissue

    Evidence for new targets and synergistic effect of metronomic celecoxib/fluvastatin combination in pilocytic astrocytoma.

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    RIGHTS : This article is licensed under the BioMed Central licence at http://www.biomedcentral.com/about/license which is similar to the 'Creative Commons Attribution Licence'. In brief you may : copy, distribute, and display the work; make derivative works; or make commercial use of the work - under the following conditions: the original author must be given credit; for any reuse or distribution, it must be made clear to others what the license terms of this work are.BACKGROUND: Pilocytic astrocytomas occur predominantly in childhood. In contrast to the posterior fossa location, hypothalamo-chiasmatic pilocytic astrocytomas display a worse prognosis often leading to multiple surgical procedures and/or several lines of chemotherapy and radiotherapy to achieve long-term control. Hypothalamo-chiasmatic pilocytic astrocytomas and cerebellar pilocytic astrocytomas have a distinctive gene signature and several differential expressed genes (ICAM1, CRK, CD36, and IQGAP1) are targets for available drugs: fluvastatin and/or celecoxib. RESULTS: Quantification by RT-Q-PCR of the expression of these genes was performed in a series of 51 pilocytic astrocytomas and 10 glioblastomas: they were all significantly overexpressed in hypothalamo-chiasmatic pilocytic astrocytomas relative to cerebellar pilocytic astrocytomas, and CRK and ICAM1 were significantly overexpressed in pilocytic astrocytomas versus glioblastomas.We used two commercially available glioblastoma cell lines and three pilocytic astrocytoma explant cultures to investigate the effect of celecoxib/fluvastatin alone or in combination. Glioblastoma cell lines were sensitive to both drugs and a combination of 100 μM celecoxib and 240 μM fluvastatin was the most synergistic. This synergistic combination was used on the explant cultures and led to massive cell death of pilocytic astrocytoma cells.As a proof of concept, a patient with a refractory multifocal pilocytic astrocytoma was successfully treated with the fluvastatin/celecoxib combination used for 18 months. It was well tolerated and led to a partial tumor response. CONCLUSION: This study reports evidence for new targets and synergistic effect of celecoxib/fluvastatin combination in pilocytic astrocytoma. Because it is non-toxic, this new strategy offers hope for the treatment of patients with refractory pilocytic astrocytoma

    Congenital and Disseminated Pyogenic Granuloma-like Vascular Lesions

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    International audienceWe report an exceptional case of multiple cutaneous and visceral neonatal pyogenic granuloma (PG) initially suggestive of a diffuse neonatal haemangiomatosis. CASE REPORT A full-term female newborn, with no significant past medical history, was referred to our department for treatment of an acute respiratory distress syndrome of neurological origin at day 8 of life. At birth, she presented with 3 small angiomatous papules and 4 subcutaneous nodules suggestive of neonatal hae-mangiomatosis (NH) (Fig. 1). A brain MRI revealed a highly vascularised brain stem tumour suggestive of glioma (Fig. 2), associated with 2 abnormal hepatic lesions consistent with infantile haemangiomas (IH) on ultrasound and CT scan. Methylprednisolone was started for the suspected glioma-associated oedema, and vincristine and propranolol were introduced for NH. After initial improvement, an acute intracranial hypertension related to cystic evolution of the disease necessitated surgical resection at the age of 2 months. Pathological examinations of the brain, cutaneous and subcutaneous lesions were similar, showing a vascular lobular proliferation of capillaries highly suggestive of PG. The misdiagnosis of glioma was eliminated. The GLUT-1 antigen marker was negative, ruling out the diagnosis of NH-like infantile haemangioma (Fig. 3). Lymphatic marker (D2-40) was also negative and eliminated a multifocal lymphangioendotheliomato-sis with thrombocytopaenia (MLT). Cutaneous and hepatic lesions gradually regressed. She is currently in complete remission after completing a treatment over 18 months with propranolol but a spontaneous improvement can not be excluded. DISCUSSIO

    Epileptogenic networks in seizures arising from motor systems.

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    International audienceClassification of seizures arising from the cortical motor system classically distinguishes between primary motor seizures and supplementary motor area (SMA) seizures. With the aim of better characterizing the underlying networks of motor seizures, we quantitatively studied the "epileptogenicity" of brain structures in 28 patients investigated by intracerebral recordings (stereoelectroencephalography, SEEG). Epileptogenicity of various motor regions (rolandic, SMA, pre-SMA, cingulate motor area (CMA), lateral area 6) as well as prefrontal and parietal areas, was calculated according to the "epileptogenicity index" (EI), a technique that allows mathematical quantification of rapid discharges at seizure onset. According to the maximal value of EI five groups of patients were identified: precentral, premotor/precentral, mesial premotor, lateral premotor and mesio-lateral premotor groups. Most patients disclosed a complex pattern of motor/premotor involvement, while pure mesial premotor seizures ("SMA seizures") were rare. A positive correlation between the number of structures exhibiting high EI and epilepsy duration was found, as well as a relationship between high EI values in rolandic cortex and poorer surgical outcome. Seizures arising from the motor system appear to be organized in complex electrophysiological patterns that often involve both lateral and mesial aspects of premotor areas together with precentral cortex
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