6 research outputs found

    Comparative expression pattern of Matrix-Metalloproteinases in human glioblastoma cell-lines and primary cultures

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    <p>Abstract</p> <p>Background</p> <p>Glioblastomas (GBM), the most frequent malignant brain tumors in adults, are characterized by an aggressive local growth pattern and highly invasive tumor cells. This invasion is facilitated by expression of matrix metalloproteinases (MMPs), a family of zinc-dependent endopeptidases. They mediate the degradation of protein components of the extracellular matrix. Twenty-three family members are known. Elevated levels of several of them have been reported in GBM. GBM cell-lines are used for <it>in vitro </it>studies of cell migration and invasion. Therefore, it is essential to know their MMP expression patterns. Only limited data for some of the cell-lines are published, yet. To fill the gaps in our knowledge would help to choose suitable model systems for analysis of regulation and function of MMPs during GBM tumorigenesis, cell migration and invasion.</p> <p>Findings</p> <p>We analysed MMP-1, -8, -9, -10, -11, -13, -17, -19, -20, -21, -23, -24, -26, -27, and MMP-28 expression in seven GBM cell-lines (SNB-19, GaMG, U251, U87, U373, U343, U138) and in four primary cell cultures by semiquantitative RT-PCR, followed changes in the MMP expression pattern with increasing passages of cell culture and examined the influence of TNF-α and TGF-β1 stimulation on the expression of selected MMPs in U251 and U373 cells.</p> <p>MMP-13, -17, -19 and -24 were expressed by all analyzed cell-lines, whereas MMP-20 and MMP-21 were not expressed by any of them. The other MMPs showed variable expression, which was dependent on passage number. Primary cells displayed a similar MMP-expression pattern as the cell-lines. In U251 and U373 cells expression of MMP-9 and MMP-19 was stimulated by TNF-α. MMP-1 mRNA expression was significantly increased in U373 cells, but not in U251 cells by this cytokine. Whereas TGF-β1 had no impact on MMP expression in U251 cells, it significantly induced MMP-11 and MMP-24 expression in U373 cells.</p> <p>Conclusions</p> <p>Literature-data and our own results suggest that the expression pattern of MMPs is highly variable, dependent on the cell-line and the cell-culture conditions used and that also regulation of MMP expression by cytokines is cell-line dependent. This is of high impact for the transfer of cell-culture experiments to clinical implementation.</p

    Hypoxic regulation of tumour-associated proteins in human gliomas

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    Das Glioblastom ist mit einem Anteil von 20% an allen hirneigenen Tumoren der häufigste und bösartigste primäre intrakranielle Tumor. Trotz multimodalem Therapiekonzept, das operative Resektion, Strahlen- und Chemotherapie verbindet, haben Patienten eine Prognose von im Mittel nur 14,6 Monaten. Sein aggressives Wachstum zieht eine Vaskularisierung nach sich, die jedoch nicht in ausreichendem Maße die Sauerstoffversorgung des Tumorgewebes sicherstellen kann. Studien mit Messelektroden zeigten einen deutlich reduzierten Sauerstoffpartialdruck im Tumor im Vergleich zum umliegenden Hirngewebe. Dieses hypoxische Milieu löst genetische Alterationen und adaptive Veränderungen der Proteinexpression aus, die eine Selektion besonders aggressiver Tumorzellen bewirkt. Für eine bessere prognostische Einschätzung sowie als zukünftige therapeutische Ziele zur Erhöhung der Response auf Chemo- und Strahlentherapie ist es von großem Interesse, solche Faktoren als mögliche Hypoxiemarker aufzufinden. In dieser Arbeit wurden die Proteine HIF-1&#945;, CAIX, VEGF, EPO und NDRG1 auf mRNA- und Proteinebene in den Glioblastomzelllinien GaMG, U251 und U373 auf eine Veränderung ihrer Expression unter hypoxischen Bedingungen untersucht. Ausmaß (5% O2, 1% O2 und 0,1% O2) und Dauer (1 h, 6 h und 24 h) der Hypoxie wurde variiert. Anschließend wurde über 24 h und 48 h eine Reoxygenierung durchgeführt. Auch wurden Expressionsuntersuchungen an Gewebeproben von Normalhirnen, Astrozytomen WHO Grad II und Glioblastomen vorgenommen. Die Verwendbarkeit von GAPDH als Marker für diese Analysen wurde durch Experimente sichergestellt, die dessen mRNA und das Protein als nicht durch Hypoxie oder Malignisierung reguliert nachwiesen. Wir bestätigten die Rolle von HIF-1&#945; als Mediator der hypoxischen Zellantwort. Während die mRNA konstant blieb, wurde das Protein unter hypoxischen Bedingungen hochreguliert. Dies zeigte auch, dass unser experimentelles Setting funktionierte. NDRG1, CA-IX sowie EPO wurden unter Hypoxie sowohl auf mRNA-, als auch Proteinebene hochreguliert und blieben unter Reooxygenierung stabil. In Glioblastomen waren diese Gene auf mRNA-Ebene bedeutend stärker exprimiert als in niedriggradigen Astrozytomen. HIF-1&#945;, NDRG1, CA-IX sowie EPO können also in humanen Glioblastomzellen als Hypoxiemarker dienen und möglicherweise auch eine prognostische und therapeutische Bedeutung haben.Glioblastomas, making up 20 % of all brain tumours, are the most common and most malignant primary intracranial tumours. Multimodal treatment with surgery, chemotherapy, and radiotherapy currently gives patients a median survival time of only 14.6 months. Glioblastomas’ aggressive growth induces vascularization that is, however, inadequate to ensure normoxic conditions in the tumour tissue. Oxygen electrode measurements have shown significantly reduced pO2 in tumour tissue compared to surrounding brain tissue. Resulting hypoxia-induced genetic alterations and adaptive changes in protein expression lead to increased selection of aggressive tumour cells. As putative hypoxia markers, regulating factors are of interest for more accurate prognosis and as therapeutic targets in order to increase response to chemotherapy and radiotherapy. This work examines the proteins HIF-1&#945;, CA-IX, VEGF, EPO, and NDRG1 in glioblastoma cell lines GaMG, U251, and U373 for changes in mRNA and protein expression under hypoxic conditions. Under our protocol, varying levels of hypoxia (5 % O2, 1 % O2, 0.1 % O2) and exposure (1, 6, and 24 h) were used. Subsequently, cells were reoxygenated for 24 and 48 hours, respectively. Expression analysis was done on normal brain tissue, WHO grade II astrocytoma, and glioblastoma. GAPDH was used as a marker for these analyses, its expression invariance on the mRNA and protein levels with respect to hypoxia as well as malignancy having been experimentally verified. We have identified HIF-1&#945; as a mediator of cell responses to hypoxia. With stable mRNA expression, protein expression levels were elevated under hypoxic conditions, confirming the validity of the experimental setup. Hypoxic NDRG1, CA-IX, and EPO levels were elevated (mRNA and protein) and remained stable under reoxygenation. Expression of mRNA was significantly higher in glioblastoma than in low-grade astrocytoma. We conclude that HIF-1&#945;, NDRG1, CA-IX, and EPO may be used as hypoxia markers in human glioblastoma cells and may be relevant for prognosis and therapy

    Management of spontaneous intracranial hypotension - Transorbital ultrasound as discriminator.

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    OBJECTIVE Spontaneous intracranial hypotension (SIH) is most commonly caused by cerebrospinal fluid (CSF) leakage. Therefore, we hypothesised that patients with orthostatic headache (OH) would show decreased optic nerve sheath diameter (ONSD) during changes from supine to upright position. METHODS Transorbital B-mode ultrasound was performed employing a high-frequency transducer for ONSD measurements in the supine and upright positions. Absolute values and changes of ONSD from supine to upright were assessed. Ultrasound was performed in 39 SIH patients, 18 with OH and 21 without OH, and in 39 age-matched control subjects. The control group comprised 20 patients admitted for back surgery without headache or any orthostatic symptoms, and 19 healthy controls. RESULTS In supine position, mean ONSD (±SD) was similar in patients with (5.38±0.91 mm) or without OH (5.48±0.89 mm; p=0.921). However, in upright position, mean ONSD was different between patients with (4.84±0.99 mm) and without OH (5.53±0.99 mm; p=0.044). Furthermore, the change in ONSD from supine to upright position was significantly greater in SIH patients with OH (-0.53±0.34 mm) than in SIH patients without OH (0.05±0.41 mm; p≤0.001) or in control subjects (0.01±0.38 mm; p≤0.001; area under the curve: 0.874 in receiver operating characteristics analysis). CONCLUSIONS Symptomatic patients with SIH showed a significant decrease of ONSD, as assessed by ultrasound, when changing from the supine to the upright position. Ultrasound assessment of the ONSD in two positions may be a novel, non-invasive tool for the diagnosis and follow-up of SIH and for elucidating the pathophysiology of SIH
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