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Unveiling the effects of the secretome of mesenchymal progenitors from the umbi...

Silva, Nuno; Rodrigues, Ana João; Sousa, Nuno; Salgado, A. J.; Fraga, J. S.; Reis, R. L.; Manadas, B.

It has been previously shown that the secretome of Human Umbilical Cord Perivascular Cells (HUCPVCs), known for their mesenchymal like stem cell character, is able to increase the metabolic viability and hippocampal neuronal cell densities. However, due to the different micro-environments of the distinct brain regions it is important to study if neurons isolated from different areas have similar, or opposite, r...


Unveiling the effects of the secretome of mesenchymal progenitors from the umbi...

Fraga, J. S.; Silva, N. A.; Lourenço, A. S.; Gonçalves, V.; Neves, N. M.; Reis, R. L.; Rodrigues, A. J.; Manadas, B.; Sousa, N.; Salgado, A. J.

It has been previously shown that the secretome of Human Umbilical Cord Perivascular Cells (HUCPVCs), known for their mesenchymal like stem cell character, is able to increase the metabolic viability and hippocampal neuronal cell densities. However, due to the different micro-environments of the distinct brain regions it is important to study if neurons isolated from different areas have similar, or opposite, r...


Neuroprotection by BDNF against glutamate-induced apoptotic cell death is media...

Almeida, R. D.; Manadas, B. J.; Melo, C. V.; Gomes, J. R.; Mendes, C. S.; Grãos, M. M.; Carvalho, R. F.; Carvalho, A. P.; Duarte, C. B.

Neurotrophins protect neurons against glutamate excitotoxicity, but the signaling mechanisms have not been fully elucidated. We studied the role of the phosphatidylinositol 3-kinase (PI3-K) and Ras/mitogen-activated protein kinase (MAPK) pathways in the protection of cultured hippocampal neurons from glutamate induced apoptotic cell death, characterized by nuclear condensation and activation of caspase-3-like e...


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