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Book
Esteves, T., Valente, M., Nascimento, D. S., Pinto-Do-Ó, P., & Quelhas, P. (2011). Automatic and semi-automatic analysis of the extension of myocardial infarction in an experimental murine model. Lecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics)Lect. Notes Comput. Sci. (Vol. 6669 LNCS, pp. 151 - 158).
Esteves, T., Valente, M., Nascimento, D. S., Pinto-Do-Ó, P., & Quelhas, P. (2011). Automatic and semi-automatic analysis of the extension of myocardial infarction in an experimental murine model. Lecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics) (Vol. 6669 LNCS, pp. 151 - 158).
Journal Article
Pagliari, S., Romanazzo, S., Mosqueira, D., Pinto-Do-Ó, P., Aoyagi, T., & Forte, G. (2013). Adult stem cells and biocompatible scaffolds as smart drug delivery tools for cardiac tissue repair. Current Medicinal Chemistry, 20(28), 3429 - 3447.
Real, C., Remédio, L., Caiado, F., Igreja, C., Borges, C., Trindade, A., Pinto-Do-Ó, P., Yagita, H., Duarte, A., & Dias, S. (2011). Bone marrow-derived endothelial progenitors expressing delta-like 4 (Dll4) regulate tumor angiogenesis. PLoS ONEPLoS ONE, 6(4).
Freire, A. G., Resende, T. P., & Pinto-Do-Ó, P. (2014). Building and repairing the heart: What can we learn from embryonic development?. BioMed Research International, 2014.
Mosqueira, D., Pagliari, S., Uto, K., Ebara, M., Romanazzo, S., Escobedo-Lucea, C., Nakanishi, J., Taniguchi, A., Franzese, O., Di Nardo, P., Goumans, M. J., Traversa, E., Pinto-Do-Ó, P., Aoyagi, T., & Forte, G. (2014). Hippo pathway effectors control cardiac progenitor cell fate by acting as dynamic sensors of substrate mechanics and nanostructure. ACS Nano, 8(3), 2033 - 2047.
Nascimento, D. S., Mosqueira, D., Sousa, L. M., Teixeira, M., Filipe, M., Resende, T. P., Araújo, A. F., Valente, M., Almeida, J., Martins, J. P., Santos, J. M., Bárcia, R. N., Cruz, P., Cruz, H., & Pinto-Do-Ó, P. (2014). Human umbilical cord tissue-derived mesenchymal stromal cells attenuate remodeling after myocardial infarction by proangiogenic, antiapoptotic, and endogenous cell-activation mechanisms. Stem Cell Research and Therapy, 5(1).
Nascimento, D. S., Valente, M., Esteves, T., De Fátima De Pina, M., Guedes, J. G., Freire, A., Quelhas, P., & Pinto-Do-Ó, P. (2011). MIQuant - semi-automation of infarct size assessment in models of cardiac ischemic injury. PLoS ONE, 6(9).
Miranda, C. O., Teixeira, C. A., Sousa, V. F., Santos, T. E., Liz, M. A., Marques, A. M., Pinto-Do-Ó, P., & Sousa, M. M. (2014). Primary bone marrow mesenchymal stromal cells rescue the axonal phenotype of twitcher mice. Cell Transplantation, 23(2), 239 - 252.
Valente, M., Nascimento, D. S., Cumano, A., & Pinto-Do-Ó, P. (2014). Sca-1+cardiac progenitor cells and heart-making: A critical synopsis. Stem Cells and Development, 23(19), 2263 - 2273.
Freire, A. G., Nascimento, D. S., Forte, G., Valente, M., Resende, T. P., Pagliari, S., Abreu, C., Carvalho, I., Nardo, P. D., & Pinto-Do-Ó, P. (2014). Stable phenotype and function of immortalized Lin-Sca-1 + cardiac progenitor cells in long-term culture: A step closer to standardization. Stem Cells and Development, 23(9), 1012 - 1026.
Freire, A. G., Nascimento, D. S., Forte, G., Valente, M., Resende, T. P., Pagliari, S., Abreu, C., Carvalho, I., Di Nardo, P., & Pinto-Do-Ó, P. (2013). Stable phenotype and function of immortalized Lin-Sca-1+ cardiac progenitor cells in long-term culture: a step closer to standardization. Stem Cells Dev, Epub ahead of print.
Miranda, C. O., Teixeira, C. A., Liz, M. A., Sousa, V. F., Franquinho, F., Forte, G., Di Nardo, P., Pinto-Do-Ó, P., & Sousa, M. M. (2011). Systemic delivery of bone marrow-derived mesenchymal stromal cells diminishes neuropathology in a mouse model of Krabbe's disease. Stem Cells, 29(11), 1738 - 1751.
Cachaço, A. S., Carvalho, T., Santos, A. C., Igreja, C., Fragoso, R., Rio, C. O., Ferreira, M., Serpa, J., Correia, S., Pinto-Do-Ó, P., & Dias, S. (2010). TNF-α regulates the effects of irradiation in the mouse bone marrow microenvironment. PLoS ONEPLoS ONE, 5(2).