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Dias, A. M., Dourado, J., Lago, P., Cabral, J., et al. (2014). Dysregulation of T cell receptor N-glycosylation: A molecular mechanism involved in ulcerative colitis. Human Molecular Genetics, 23(9), 2416 - 2427.
Franquinho, F., Nogueira-Rodrigues, J., Duarte, J. M., Esteves, S. S., et al. (2017). The Dyslexia-susceptibility Protein KIAA0319 Inhibits Axon Growth Through Smad2 Signaling. Cerebral cortex (New York, N.Y. : 1991), 27(3), 1732 - 1747.
Reis, R., Feijão, T., Gouveia, S., Pereira, A. J., et al. (2009). Dynein and Mast/Orbit/CLASP have antagonistic roles in regulating kinetochore-microtubule plus-end dynamics. Journal of Cell Science, 122(14), 2543 - 2553.
Sousa, S. R., Manuela Brás, M., Moradas-Ferreira, P., & Barbosa, M. A. (2007). Dynamics of fibronectin adsorption on TiO 2 surfaces. Langmuir, 23(13), 7046 - 7054.
Cardoso-Cruz, H., Sameshima, K., Lima, D., & Galhardo, V. (2011). Dynamics of circadian thalamocortical flow of information during a peripheral neuropathic pain condition. Frontiers in Integrative Neuroscience, 5.
Costas, J., Pereira, P. S., Vieira, C. P., Pinho, S., et al. (2004). Dynamics and function of intron sequences of the wingless gene during the evolution of the Drosophila genus. Evolution and Development, 6(5), 325 - 335.
Martins, I., Pinto, M., Wilson, S. P., Lima, D., & Tavares, I. (2008). Dynamic of migration of HSV-1 from a medullary pronociceptive centre: Antinociception by overexpression of the preproenkephalin transgene. European Journal of Neuroscience, 28(10), 2075 - 2083.
Maiato, H., DeLuca, J., Salmon, E. D., & Earnshaw, W. C. (2004). The dynamic kinetochore-microtubule interface. Journal of Cell Science, 117(23), 5461 - 5477.
Barbosa, D. J., Duro, J., Prevo, B., Cheerambathur, D. K., et al. (2017). Dynactin binding to tyrosinated microtubules promotes centrosome centration in C. elegans by enhancing dynein-mediated organelle transport. PLoS Genetics, 13(7).
Martínez-Salamanca, J. I., Zurita, M., Costa, C., Martínez-Salamanca, E., et al. (2016). Dual Strategy With Oral Phosphodiesterase Type 5 Inhibition and Intracavernosal Implantation of Mesenchymal Stem Cells Is Superior to Individual Approaches in the Recovery of Erectile and Cavernosal Functions After Cavernous Nerve Injury in Rats. Journal of Sexual Medicine, 13(1), 1 - 11.
Coelho, P. A., Queiroz-Machado, J., Carmo, A. M., Moutinho-Pereira, S., et al. (2008). Dual role of topoisomerase II in centromere resolution and aurora B activity. PLoS biology, 6(8).
Coelho, P. A., Queiroz-Machado, J., Carmo, A. M., Moutinho-Pereira, S., et al. (2008). Dual role of topoisomerase II in centromere resolution and aurora B activity. PLoS Biology, 6(8), 1758 - 1777.
Loureiro, J. A., Gomes, B., Fricker, G., Cardoso, I., et al. (2015). Dual ligand immunoliposomes for drug delivery to the brain. Colloids and Surfaces B: Biointerfaces, 134, 213 - 219.
Rodrigues, P. N. S., Vázquez-Dorado, S., Neves, J. V., & Wilson, J. M. (2006). Dual function of fish hepcidin: Response to experimental iron overload and bacterial infection in sea bass (Dicentrarchus labrax). Developmental and Comparative Immunology, 30(12), 1156 - 1167.
Reis, F., Teixeira de Lemos, E., Almeida, L., Parada, B., et al. (2007). Dual Effect of Nitrate Therapy for Cyclosporine-Induced Hypertension on Vascular and Platelet Morphofunctional Markers; An Animal Model. Transplantation Proceedings, 39(8), 2501 - 2506.
Lopes, M., Shrestha, N., Correia, A., Shahbazi, M. - A., et al. (2016). Dual chitosan/albumin-coated alginate/dextran sulfate nanoparticles for enhanced oral delivery of insulin. Journal of Controlled Release, 232, 29 - 41.
Fernandes, V. C., Albergaria, J. T., Oliva-Teles, T., Delerue-Matos, C., & de Marco, P. (2009). Dual augmentation for aerobic bioremediation of MTBE and TCE pollution in heavy metal-contaminated soil. Biodegradation, 20(3), 375 - 382.
Nascimento, D. S. M., Potes, C. S., Soares, M. L., Ferreira, A. C., et al. (2017). Drug-Induced HSP90 Inhibition Alleviates Pain in Monoarthritic Rats and Alters the Expression of New Putative Pain Players at the DRG. Molecular Neurobiology.
Faria, J., Moraes, C. B., Song, R., Pascoalino, B. S., et al. (2015). Drug discovery for human African trypanosomiasis: Identification of novel scaffolds by the newly developed HTS SYBR green assay for trypanosoma brucei. Journal of Biomolecular Screening, 20(1), 70 - 81.
Colombié, N., Vérollet, C., Sampaio, P., Moisand, A., et al. (2006). The Drosophila γ-tubulin small complex subunit Dgrip84 is required for structural and functional integrity of the spindle apparatus. Molecular Biology of the Cell, 17(1), 272 - 282.
Moutinho-Pereira, S., Matos, I., & Maiato, H. (2010). Drosophila S2 Cells as a Model System to Investigate Mitotic Spindle Dynamics, Architecture, and Function. Methods in Cell Biology (Vol. 97, pp. 243 - 257).
Tavares, L., Pereira, E., Correia, A., Santos, M. A., et al. (2015). Drosophila PS2 and PS3 integrins play distinct roles in retinal photoreceptors-glia interactions. GLIA, 63(7), 1155 - 1165.
Conde, C., Osswald, M., Barbosa, J., Moutinho-Santos, T., et al. (2013). Drosophila Polo regulates the spindle assembly checkpoint through Mps1-dependent BubR1 phosphorylation. EMBO Journal, 32(12), 1761 - 1777.
Marinho, J., Casares, F., & Pereira, P. S. (2011). The Drosophila Nol12 homologue viriato is a dMyc target that regulates nucleolar architecture and is required for dMyc-stimulated cell growth. Development, 138(2), 349 - 357.
Malmanche, N., & Clark, D. V. (2004). Drosophila melanogaster Prat, a purine de novo synthesis gene, has a pleiotropic maternal-effect phenotype. Genetics, 168(4), 2011 - 2023.

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